952 resultados para Moléculas simples
Resumo:
This dissertation describes the synthesis and characterization of different phthalocyanine (Pc) derivatives, as well as some porphyrins (Pors), for supramolecular interaction with different carbon nanostructures, to evaluate their potential application in electronic nanodevices. Likewise, it is also reported the preparation and biological evaluation of interesting phthalocyanine conjugates for cancer photodynamic therapy (PDT) and microorganisms photodynamic inactivation (PDI). The phthalonitrile precursors were prepared from commercial phthalonitriles by nucleophilic substitution of -NO2, -Cl, or -F groups, present in the phthalonitrile core, by thiol or pyridyl units. After the synthesis of these phthalonitriles, the corresponding Pcs were prepared by ciclotetramerization using a metallic salt as template at high temperatures. A second strategy involved the postfunctionalization of hexadecafluorophthalocyaninato zinc(II) through the adequate substituents of mercaptopyridine or cyclodextrin units on the macrocycle periphery. The different compounds were structurally characterized by diverse spectroscopic techniques, namely 1H, 13C and 19F nuclear magnetic resonance spectroscopies (attending the elemental composition of each structure); absorption and emission spectroscopy, and mass spectrometry. For the specific photophysical studies were also used electrochemical characterization, femtosecond and raman spectroscopy, transmission electron and atomic force microscopy. It was highlighted the noncovalent derivatisation of carbon nanostructures, mainly single wall carbon nanotubes (SWNT) and graphene nanosheets with the prepared Pc conjugates to study the photophysical properties of these supramolecular nanoassemblies. Also, from pyridyl-Pors and ruthenium phthalocyanines (RuPcs) were performed Por-RuPcs arrays via coordination chemistry. The results obtained of the novel supramolecular assemblies showed interesting electron donor-acceptor interactions and might be considered attractive candidates for nanotechnological devices. On the other hand, the amphiphilic phthalocyanine-cyclodextrin (Pc-CD) conjugates were tested in biological trials to assess their ability to inhibit UMUC- 3 human bladder cancer cells. The results obtained demonstrated that these photoactive conjugates are highly phototoxic against human bladder cancer cells and could be applied as promising PDT drugs.
Resumo:
Os primeiros estudos onde se tentava avaliar os melhores horários para se lecionar de forma a se poderem otimizar os horários escolares são já muito antigos. O primeiro a estabelecer uma relação sistemática entre performance cognitiva, Cronobiologia e sono foi Kleitman, evidenciando uma paralelismo entre o ritmo circadiano da temperatura central e a altura do dia em que eram realizadas tarefas simples de repetição. Após este primeiro estudo, muitos outros se seguiram, contudo a maioria apenas encontrou ritmos em protocolos de rotina constante e dessincronização forçada desprovidos de validade ecológica. Acresce ainda o facto de neste tipo de estudos não haver uma manipulação sistemática do efeito do padrão individual de distribuição dos parâmetros circadianos no nictómero, designado na literatura como Cronotipo. Perante isto, o presente estudo pretende avaliar a influência do Cronotipo nos ritmos cognitivos, utilizando um protocolo de rotina normal (Ecológico), onde também se manipula o efeito fim-de-semana. Para testar as premissas supramencionadas, utilizou-se uma amostra de 16 alunos universitários, que numa primeira fase responderam ao questionário de Matutinidade e Vespertinidade de Horne&Östberg, para caracterização do Cronotipo, e posteriormente andaram 15-17 dias consecutivos com tempatilumis (actímetros) para análise de ritmos de temperatura e atividade, com iPads onde realizavam ao longo do dia várias tarefas cognitivas e com o Manual de Registo Diário, onde respondiam ao diário de sono e de atividade. A análise de dados denotou a inexistência de expressão de ritmos na maioria dos parâmetros cognitivos inviabilizando a verificação de diferenças significativas entre indivíduos matutinos e vespertinos nestes parâmetros. Esta ausência de visualização da expressão rítmica pode ser explicada pelo facto de os participantes não terem aderido da forma desejada e exigida, à realização das tarefas cognitivas, ou pelo facto de termos usado um protocolo de rotina normal, em detrimento dos protocolos de rotina constate e dessincronização forçada, não controlando assim algumas variáveis que influenciam o desempenho cognitivo, podendo estas mascarar ou mesmo eliminar o ritmo. Ainda assim e apesar destas contingências observaram-se ritmos circadianos nas variáveis de autoavaliação, mesmo com o paradigma ecológico. Verificou-se ainda um efeito da hora do dia em vários parâmetros de tarefas cognitivas e motoras medidas objetivamente, assim como uma diminuição da performance cognitiva nos vespertinos, comparativamente aos matutinos, na janela temporal das 6h às 12 horas, que coincide com a maior concentração de horas de aulas por dia na Universidade onde o estudo foi realizado. Outros estudos serão necessários para consolidar a influência do Cronotipo nos ritmos cognitivos, utilizando o protocolo de rotina normal para garantir a validade ecológica, salvaguardando uma participação mais ativa na execução das tarefas cognitivas por parte dos sujeitos em estudo.
Resumo:
Slender masonry structures are distributed all over the world and constitute a relevant part of the architectural and cultural heritage of humanity. Their protection against earthquakes is a topic of great concern among the scientific community. This concern mainly arises from the strong damage or complete loss suffered by this group of structures due to catastrophic events and the need and interest to preserve them. Although the great progress in technology, and in the knowledge of seismology and earthquake engineering, the preservation of these brittle and massive structures still represents a major challenge. Based on the research developed in this work it is proposed a methodology for the seismic risk assessment of slender masonry structures. The proposed methodology was applied for the vulnerability assessment of Nepalese Pagoda temples which follow very simple construction procedure and construction detailing in relation to seismic resistance requirements. The work is divided in three main parts. Firstly, particular structural fragilities and building characteristics of the important UNESCO classified Nepalese Pagoda temples which affect their seismic performance and dynamic properties are discussed. In the second part the simplified method proposed for seismic vulnerability assessment of slender masonry structures is presented. Finally, the methodology proposed in this work is applied to study Nepalese Pagoda temples, as well as in the efficiency assessment of seismic performance improvement solution compatible with original cultural and technological value.
Resumo:
De uma forma simples, esta é uma tese que associa a dimensão territorial à formulação de políticas públicas no âmbito dos Serviços de Interesse Geral, expressão atualmente utilizada no seio da Comissão Europeia em substituição do termo Serviços Públicos. O ponto de partida é o de que, particularmente nas últimas duas décadas, estes serviços tiveram de se adaptar a um mundo em mudança, quer ao nível das tendências políticas, quer do ponto de vista dos constrangimentos financeiros. A decisão sobre a afetação e distribuição de recursos tem, por isso, obtido uma atenção crescente no domínio das políticas públicas. Contudo, as decisões sobre a natureza, a abrangência e a distribuição dos recursos a prestar são complexas, envolvendo, não só critérios técnicos, mas também julgamentos de valor e a criação de consensos políticos. Esta questão é ainda mais premente numa conjuntura, por um lado, de contenção de gastos, no qual a procura de eficiência ganha maior preponderância, e, por outro, de incremento das próprias expectativas dos cidadãos, em que a ideia de equidade é valorada. Atendendo a este contexto, é natural que em diversos processos de tomada de decisão haja alguma tensão entre estes dois princípios, questionando-se sobre quanto é que se deve sacrificar da equidade a favor da eficiência e vice-versa. A presente investigação filia nestas inquietações. O argumento subjacente é o de que o princípio de Coesão Territorial, enquanto novo paradigma de desenvolvimento do território europeu e um dos mais recentes objetivos políticos da Comissão e dos estados-membros, contribui para ajudar a ponderar a relação equidade/eficiência em processos de decisão política sobre provisão de Serviços de Interesse Geral. A linha condutora de investigação centra-se na saúde (em geral) e nos cuidados de saúde (em particular) como exemplo de um serviço que, dada a sua importância na sociedade, justifica uma atenção especial das políticas públicas, mas que tem sido alvo de debate político e académico e de reorganização da sua estrutura na tentativa de diminuição dos custos associados, com repercussões do ponto de vista territorial. A esta questão acresce o facto de que pouco se conhece sobre quais os princípios e os critérios que estão na base de decisões políticas no campo da saúde e qual o papel que o território aqui ocupa. Para compreender se e como a dimensão territorial é considerada na formulação de políticas de saúde, bem como de que forma a adoção do princípio de coesão territorial na formulação de políticas públicas introduz um outro tipo de racionalidade aos processos de tomada de decisão, optou-se por uma metodologia de abordagem essencialmente qualitativa, baseada i) na realização de entrevistas semiestruturadas conduzidas presencialmente a atores-chave da esfera da decisão pública, ii) na análise dos principais instrumentos programáticos das políticas de saúde e iii) na análise de dois estudos de caso (sub-regiões do Baixo Vouga e da Beira Interior Sul). Os resultados alcançados permitem, por um lado, compreender, discutir e clarificar os processos de tomada de decisão em saúde, por outro, justificar o propósito da adoção do princípio de Coesão Territorial na formulação de políticas e, por fim, avançar com linhas de investigação futura sobre Serviços de Interesse Geral e Coesão Territorial.
Resumo:
The main motivation for the work presented here began with previously conducted experiments with a programming concept at the time named "Macro". These experiments led to the conviction that it would be possible to build a system of engine control from scratch, which could eliminate many of the current problems of engine management systems in a direct and intrinsic way. It was also hoped that it would minimize the full range of software and hardware needed to make a final and fully functional system. Initially, this paper proposes to make a comprehensive survey of the state of the art in the specific area of software and corresponding hardware of automotive tools and automotive ECUs. Problems arising from such software will be identified, and it will be clear that practically all of these problems stem directly or indirectly from the fact that we continue to make comprehensive use of extremely long and complex "tool chains". Similarly, in the hardware, it will be argued that the problems stem from the extreme complexity and inter-dependency inside processor architectures. The conclusions are presented through an extensive list of "pitfalls" which will be thoroughly enumerated, identified and characterized. Solutions will also be proposed for the various current issues and for the implementation of these same solutions. All this final work will be part of a "proof-of-concept" system called "ECU2010". The central element of this system is the before mentioned "Macro" concept, which is an graphical block representing one of many operations required in a automotive system having arithmetic, logic, filtering, integration, multiplexing functions among others. The end result of the proposed work is a single tool, fully integrated, enabling the development and management of the entire system in one simple visual interface. Part of the presented result relies on a hardware platform fully adapted to the software, as well as enabling high flexibility and scalability in addition to using exactly the same technology for ECU, data logger and peripherals alike. Current systems rely on a mostly evolutionary path, only allowing online calibration of parameters, but never the online alteration of their own automotive functionality algorithms. By contrast, the system developed and described in this thesis had the advantage of following a "clean-slate" approach, whereby everything could be rethought globally. In the end, out of all the system characteristics, "LIVE-Prototyping" is the most relevant feature, allowing the adjustment of automotive algorithms (eg. Injection, ignition, lambda control, etc.) 100% online, keeping the engine constantly working, without ever having to stop or reboot to make such changes. This consequently eliminates any "turnaround delay" typically present in current automotive systems, thereby enhancing the efficiency and handling of such systems.
Resumo:
The sustainable viticulture of a region passes, among other aspects, for maximizing the varieties potential minimizing subsequent interventions during winemaking, which should contribute to the production of quality wines maintaining their typicity and rationalizing costs. The detailed knowledge of each Appellation specificities, namely vineyard parcel (soil type and topographical peculiarities) and harvest climatic conditions is crucial for sustainability in this sector. Thus, in line with this current trend, the starting point for the development of this PhD thesis was to evaluate the oenological potential of different varieties cultivated throughout Bairrada Appellation (Portugal). During maturation several changes in grape varieties occur, namely berries become sweeter, less acidic, and they develop flavour, aroma and colour properties. The development of these characteristics is essential to define grapes oenological potential, i.e. to estimate the possibility of their usage to produce specific wines. A three years sampling plan was designed to evaluate the effect of harvest year and parcel characteristics on V. vinifera cv. Arinto, Bical, Sauvignon Blanc, Baga, Castelão, Touriga Nacional, and Sousão grapes composition. For each variety, 3 parcels with different characteristics were selected. Several physicochemical parameters were evaluated, during maturation: berry weight, pH, titratable acidity, sugar and phenolic contents, antiradical activity, and volatile composition (free fraction). Special attention was devoted to grapes at technologic maturity, since, besides these parameters, glycosidically-linked fraction was also considered. By using the results obtained at technologic maturity, a comprehensive approach was applied to identify the significance of harvest and parcel characteristics effects on each variety composition. Considering all the parameters under study, it may be highlighted some significant differences. According to the obtained results determined during maturation, it was possible to conclude that Arinto, Bical and Sauvignon Blanc grapes from parcels with clay-sandy and clay-calcareous soils have higher phenolic content and antiradical activity. Otherwise, Sauvignon Blanc presented similar volatile composition for grapes cultivated in the 3 parcels, while Arinto and Bical exhibited higher volatile content in grapes from claysandy and clay-calcareous soils. For Baga, Castelão and Touriga Nacional red varieties, grapes with higher phenolic content, antiradical activity, and volatile content were obtained from clayey and clay-calcareous soils. Furthermore, for Touriga Nacional, parcels altitude seems also to modulate grapes composition. Beyond parcel effect, harvest year conditions also influence grapes composition: 2011 harvest was related with lower phenolic and volatile contents, as well as lower antiradical activity.For grapes collected at technologic maturity, analysis of variance-simultaneous component analysis (ASCA) was applied combining all the parameters under study, in order to assess the influence of harvest and parcel characteristics on each variety oenological potential. The results obtained using this comprehensive approach is closely related with those observed during maturation and revealed that harvest was the main factor that influenced grapes composition (53% to 68% of the total data set variance) followed by parcel characteristics, explaining ca. 15-19% of the total data set variance. The oenological potential of each variety may be different from one parcel to another, i.e., clay-sandy and clay-calcareous related-environments seem to favour Arinto and Bical white grapes composition, but for the red varieties, grapes composition was favoured by clayey and clay-calcareous soils. Besides, also higher altitude seems to favour Touriga Nacional grapes composition. Sauvignon Blanc seems to be a variety well adapted to the different parcel characteristics. In order to go forward in the valuation of these varieties, the aroma properties of 6 monovarietal wines were studied based on an aroma network-approach, linking molecular data related to volatile composition and aroma data about the key odor active molecules. This approach allowed to identify different wine aroma properties and to infer about the consumer’s sensory perception. It was found that aroma properties differ from one wine variety to another: while Arinto and Sauvignon Blanc wine exhibited higher tree fruity, sweety and flowery aromas, related essentially with ester compounds and C13 norisoprenoids, the opposite was obtained for Bical wine, corroborating the aroma sensory perceptions of the trained panel. Sauvignon Blanc also exhibited higher toasted aromas (related with thiols, mainly with 2-methyl-3-furanthiol). Touriga Nacional red wine exhibited higher tree, tropical, and berry fruits notes (sensory described as sweet fruits), toasted and flowery aromas, while these are similar for the other red wines under study. Besides Portuguese Bairrada wines, this aroma network approach is a tool that can be used to explain the aroma properties of wines worldwide. The grape and wine data generated under the present PhD thesis, in the context of Bairrada Appellation, shows the unique character of each variety, and may be used by growers and wine producers as a support for decisionmaking based on objective criteria, increasing the sustainability in this sector. For instance, it is possible to take advantage of the natural resources and produce products with different characteristics obtained from the same variety, minimizing costs during the winemaking process.
Resumo:
Communication and cooperation between billions of neurons underlie the power of the brain. How do complex functions of the brain arise from its cellular constituents? How do groups of neurons self-organize into patterns of activity? These are crucial questions in neuroscience. In order to answer them, it is necessary to have solid theoretical understanding of how single neurons communicate at the microscopic level, and how cooperative activity emerges. In this thesis we aim to understand how complex collective phenomena can arise in a simple model of neuronal networks. We use a model with balanced excitation and inhibition and complex network architecture, and we develop analytical and numerical methods for describing its neuronal dynamics. We study how interaction between neurons generates various collective phenomena, such as spontaneous appearance of network oscillations and seizures, and early warnings of these transitions in neuronal networks. Within our model, we show that phase transitions separate various dynamical regimes, and we investigate the corresponding bifurcations and critical phenomena. It permits us to suggest a qualitative explanation of the Berger effect, and to investigate phenomena such as avalanches, band-pass filter, and stochastic resonance. The role of modular structure in the detection of weak signals is also discussed. Moreover, we find nonlinear excitations that can describe paroxysmal spikes observed in electroencephalograms from epileptic brains. It allows us to propose a method to predict epileptic seizures. Memory and learning are key functions of the brain. There are evidences that these processes result from dynamical changes in the structure of the brain. At the microscopic level, synaptic connections are plastic and are modified according to the dynamics of neurons. Thus, we generalize our cortical model to take into account synaptic plasticity and we show that the repertoire of dynamical regimes becomes richer. In particular, we find mixed-mode oscillations and a chaotic regime in neuronal network dynamics.
Resumo:
The present work aimed to explore the potential of new nanocomposites based on carbon nanostructures and metal nanoparticles for the detection of biomolecules through surface enhanced Raman scattering (SERS). In a first step, polyvinyl alcohol composites were prepared incorporating silver nanoparticles by two different reduction procedures. At first without introduction of carbon nanostructures. These composites showed good results for the SERS identification of nucleic acids. Next, the synthesis and characterization of graphene oxide was studied to be used in the preparation of silver and gold nanocomposites. The reduction of this nanomaterial with different chemical agents was explored, since its reduction degree may be a determinant factor for the application envisaged (biomolecules interaction). The preparation of the nanocomposites with silver and gold was performed with different reducing agents. The SERS activity of these new nanocomposites was then explored in the presence of different analytes, varying the experimental conditions for Raman spectra acquisition. It was interesting to verify that the silver containing nanocomposites presented the particularity to intensify the graphene D and G bands. It is also important to highlight that a new eco-friendly reducing agent was tested for the synthesis of the graphene oxide composites, an Eucalyptus Globulus extract. Other variable introduced was the preparation of gold nanostars synthesized with hydroxylamine in the presence of graphene oxide, which allowed the preparation of a new nanocomposite with SERS potential. Fibrous membranes were also prepared by electrospinning with the aim to prepare SERS supports with adequate topography and porosity for the formation of nanoparticles agglomerates for the creation of the so-called hot-spots and also to allow the penetration of the analyte molecules. The polymers polyvinyl alcohol and polyacrylonitrile were selected for electrospinning. Using this technique, electrospun mantles with silver and gold nanoparticles and nanocomposites were prepared. Several variables were studied, such as the introduction of the nano-fillers during the electrospinning process, later deposition of the nano-fillers on the simple electrospun polymeric fibres and surface functionalization of the simple polymeric membranes to link the nano-fillers. At last, the potentialities of using carbon nanotubes forests, produced by chemical vapor deposition and coated with gold film by sputtering, as new SERS substrates were explored. It was found that the SERS detection of DNA bases and ADN itself is possible using these substrates.
Resumo:
Nesta tese abordam-se várias formulações e diferentes métodos para resolver o Problema da Árvore de Suporte de Custo Mínimo com Restrições de Peso (WMST – Weight-constrained Minimum Spanning Tree Problem). Este problema, com aplicações no desenho de redes de comunicações e telecomunicações, é um problema de Otimização Combinatória NP-difícil. O Problema WMST consiste em determinar, numa rede com custos e pesos associados às arestas, uma árvore de suporte de custo mínimo de tal forma que o seu peso total não exceda um dado limite especificado. Apresentam-se e comparam-se várias formulações para o problema. Uma delas é usada para desenvolver um procedimento com introdução de cortes baseado em separação e que se tornou bastante útil na obtenção de soluções para o problema. Tendo como propósito fortalecer as formulações apresentadas, introduzem-se novas classes de desigualdades válidas que foram adaptadas das conhecidas desigualdades de cobertura, desigualdades de cobertura estendida e desigualdades de cobertura levantada. As novas desigualdades incorporam a informação de dois conjuntos de soluções: o conjunto das árvores de suporte e o conjunto saco-mochila. Apresentam-se diversos algoritmos heurísticos de separação que nos permitem usar as desigualdades válidas propostas de forma eficiente. Com base na decomposição Lagrangeana, apresentam-se e comparam-se algoritmos simples, mas eficientes, que podem ser usados para calcular limites inferiores e superiores para o valor ótimo do WMST. Entre eles encontram-se dois novos algoritmos: um baseado na convexidade da função Lagrangeana e outro que faz uso da inclusão de desigualdades válidas. Com o objetivo de obter soluções aproximadas para o Problema WMST usam-se métodos heurísticos para encontrar uma solução inteira admissível. Os métodos heurísticos apresentados são baseados nas estratégias Feasibility Pump e Local Branching. Apresentam-se resultados computacionais usando todos os métodos apresentados. Os resultados mostram que os diferentes métodos apresentados são bastante eficientes para encontrar soluções para o Problema WMST.
Resumo:
O conforto térmico é uma temática interessante, uma vez que está presente no nosso dia-a-dia. É sabido que um ambiente térmico afeta o bem-estar de uma pessoa e pode influenciar a produtividade intelectual. Se o ambiente térmico tiver características de “quente” ou de “frio” pode suscitar desconforto térmico, ou até mesmo stress térmico. Nestas condições o ambiente térmico pode afetar a saúde da pessoa. Usando o laboratório mais acessível e gratuito, a Atmosfera, é possível através de atividades simples interpretar fisicamente as características de um ambiente térmico. A Atmosfera é, também, um fascinante laboratório de ensino, porque nela se podem estudar alguns processos físicos lecionados ao longo dos mais variados níveis de ensino nas disciplinas de Física e Química e Geografia. Na Atmosfera, podem-se fazer diversos estudos simples que podem de uma forma fácil responder a inquietantes questões relacionadas com o bem-estar de uma pessoa, mais concretamente se está em conforto térmico. Neste trabalho é feita a introdução da temática “Mudança Global” lecionada no 8º ano de escolaridade. A ponte para esta temática pode usar diferentes caminhos, como por exemplo usando a temática “Energia”. Procurou-se responder à questão de investigação que delineou todo o “caminho” deste trabalho, ou seja, “Quais as contribuições para o Ensino nas Ciências, quando se usa a temática “Conforto Térmico”, numa perspetiva de ensino e aprendizagem?” A resposta a esta questão central passou pelos seguintes objetivos: articular as condições atmosféricas com o conforto térmico; avaliar o conforto térmico numa sala de aula usando instrumentos meteorológicos simples, que podem ser construídos pelos alunos; avaliar quais os índices térmicos que devem ser usados para avaliar o conforto térmico de forma simples para os alunos; analisarem os materiais usados na construção de edifícios escolares que condicionam o conforto térmico numa perspetiva de balanço energético; sugerir atividades experimentais que podem desenvolver competências na temática Conforto Térmico; analisar a influência do conforto térmico registado no interior de uma sala de aula e a aprendizagem. Neste trabalho foi usada uma inovadora metodologia e ferramentas para interpretar como um ambiente térmico pode influenciar o bem-estar de um aluno e a construção do seu conhecimento. Recorreu-se à aplicação de um índice de Sensação de Conforto Térmico, EsConTer, de fácil uso e a uma escala térmica de cores onde o aluno indicava a sua sensação térmica. Os resultados obtidos mostraram inequivocamente que o ambiente térmico de uma sala de aula pode ser previsto através da aplicação do índice EsConTer e que a sensação térmica sentida pelos alunos pode ser registada com a utilização de uma escala térmica de cores. O conforto térmico é uma temática interessante, uma vez que está presente no nosso dia-a-dia. É sabido que um ambiente térmico afeta o bem-estar de uma pessoa e pode influenciar a produtividade intelectual. Se o ambiente térmico tiver características de “quente” ou de “frio” pode suscitar desconforto térmico, ou até mesmo stress térmico. Nestas condições o ambiente térmico pode afetar a saúde da pessoa. Usando o laboratório mais acessível e gratuito, a Atmosfera, é possível através de atividades simples interpretar fisicamente as características de um ambiente térmico. A Atmosfera é, também, um fascinante laboratório de ensino, porque nela se podem estudar alguns processos físicos lecionados ao longo dos mais variados níveis de ensino nas disciplinas de Física e Química e Geografia. Na Atmosfera, podem-se fazer diversos estudos simples que podem de uma forma fácil responder a inquietantes questões relacionadas com o bem-estar de uma pessoa, mais concretamente se está em conforto térmico. Neste trabalho é feita a introdução da temática “Mudança Global” lecionada no 8º ano de escolaridade. A ponte para esta temática pode usar diferentes caminhos, como por exemplo usando a temática “Energia”. Procurou-se responder à questão de investigação que delineou todo o “caminho” deste trabalho, ou seja, “Quais as contribuições para o Ensino nas Ciências, quando se usa a temática “Conforto Térmico”, numa perspetiva de ensino e aprendizagem?” A resposta a esta questão central passou pelos seguintes objetivos: articular as condições atmosféricas com o conforto térmico; avaliar o conforto térmico numa sala de aula usando instrumentos meteorológicos simples, que podem ser construídos pelos alunos; avaliar quais os índices térmicos que devem ser usados para avaliar o conforto térmico de forma simples para os alunos; analisarem os materiais usados na construção de edifícios escolares que condicionam o conforto térmico numa perspetiva de balanço energético; sugerir atividades experimentais que podem desenvolver competências na temática Conforto Térmico; analisar a influência do conforto térmico registado no interior de uma sala de aula e a aprendizagem. Neste trabalho foi usada uma inovadora metodologia e ferramentas para interpretar como um ambiente térmico pode influenciar o bem-estar de um aluno e a construção do seu conhecimento. Recorreu-se à aplicação de um índice de Sensação de Conforto Térmico, EsConTer, de fácil uso e a uma escala térmica de cores onde o aluno indicava a sua sensação térmica. Os resultados obtidos mostraram inequivocamente que o ambiente térmico de uma sala de aula pode ser previsto através da aplicação do índice EsConTer e que a sensação térmica sentida pelos alunos pode ser registada com a utilização de uma escala térmica de cores.O conforto térmico é uma temática interessante, uma vez que está presente no nosso dia-a-dia. É sabido que um ambiente térmico afeta o bem-estar de uma pessoa e pode influenciar a produtividade intelectual. Se o ambiente térmico tiver características de “quente” ou de “frio” pode suscitar desconforto térmico, ou até mesmo stress térmico. Nestas condições o ambiente térmico pode afetar a saúde da pessoa. Usando o laboratório mais acessível e gratuito, a Atmosfera, é possível através de atividades simples interpretar fisicamente as características de um ambiente térmico. A Atmosfera é, também, um fascinante laboratório de ensino, porque nela se podem estudar alguns processos físicos lecionados ao longo dos mais variados níveis de ensino nas disciplinas de Física e Química e Geografia. Na Atmosfera, podem-se fazer diversos estudos simples que podem de uma forma fácil responder a inquietantes questões relacionadas com o bem-estar de uma pessoa, mais concretamente se está em conforto térmico. Neste trabalho é feita a introdução da temática “Mudança Global” lecionada no 8º ano de escolaridade. A ponte para esta temática pode usar diferentes caminhos, como por exemplo usando a temática “Energia”. Procurou-se responder à questão de investigação que delineou todo o “caminho” deste trabalho, ou seja, “Quais as contribuições para o Ensino nas Ciências, quando se usa a temática “Conforto Térmico”, numa perspetiva de ensino e aprendizagem?” A resposta a esta questão central passou pelos seguintes objetivos: articular as condições atmosféricas com o conforto térmico; avaliar o conforto térmico numa sala de aula usando instrumentos meteorológicos simples, que podem ser construídos pelos alunos; avaliar quais os índices térmicos que devem ser usados para avaliar o conforto térmico de forma simples para os alunos; analisarem os materiais usados na construção de edifícios escolares que condicionam o conforto térmico numa perspetiva de balanço energético; sugerir atividades experimentais que podem desenvolver competências na temática Conforto Térmico; analisar a influência do conforto térmico registado no interior de uma sala de aula e a aprendizagem. Neste trabalho foi usada uma inovadora metodologia e ferramentas para interpretar como um ambiente térmico pode influenciar o bem-estar de um aluno e a construção do seu conhecimento. Recorreu-se à aplicação de um índice de Sensação de Conforto Térmico, EsConTer, de fácil uso e a uma escala térmica de cores onde o aluno indicava a sua sensação térmica. Os resultados obtidos mostraram inequivocamente que o ambiente térmico de uma sala de aula pode ser previsto através da aplicação do índice EsConTer e que a sensação térmica sentida pelos alunos pode ser registada com a utilização de uma escala térmica de cores.No geral, os alunos com a professora investigadora puderam afirmar que a avaliação de conhecimentos adquiridos pelos alunos, na sala de aula, é condicionada pela sensação térmica sentida para ambientes considerados de “frios” e ambientes considerados de “quentes”. Concluiu-se, que o processo de aprendizagem é afetado pelas condições termohigrométricas do ambiente que rodeiam os alunos. É importante salientar, que a análise de resultados mostrou que quando os valores da sensação térmica sentida pelos alunos é inferior a -0,5, ou superior a +0,5 da escala térmica de cores, os resultados obtidos da avaliação de conhecimentos tendem a ser negativos e quando a sensação térmica sentida pelos alunos se localiza na zona de conforto térmico, ou seja, entre os valores de -0,5 e +0,5, os resultados são, no geral, positivos, o que confirma que os resultados das avaliações de conhecimentos, para os alunos, depende do ambiente térmico. Foi possível ainda constatar que quando a sensação térmica sentida pelos alunos regista valores baixos com tendência a “frio” (-2) ou altos com tendência a “quente” (+2) os resultados obtidos pelos alunos são, no geral, bastante negativos. O grau de insatisfação previsto para cada ambiente térmico quando se usou o índice EsConTer, mostrou concordância de interpretação em face da sensação térmica sentida pelos alunos e registada na escala de sensação térmica de cores. Pensamos ter evidências suficientes para afirmar que a abordagem didática utilizada, considerada de inovadora, durante a realização do trabalho, na disciplina de Ciências Físico-Químicas promoveu nos alunos o gosto pela disciplina e que os resultados obtidos indicam que: os alunos sentiram interesse e motivação pela disciplina, conseguiram compreender a sua importância para o seu futuro e para o seu dia-a-dia, pois conseguiram ver a aplicação dos diversos conteúdos abordados na disciplina em diversas situações do seu quotidiano; a verdadeiros “investigadores”, suscitando assim um maior envolvimento e motivação nos alunos; a utilização de questões problema para a introdução dos conteúdos foi uma estratégia que os alunos consideraram uma mais-valia, uma vez que associados a essas questões existiram discussões e debates que promoveram a participação de todos os alunos, tornando as aulas mais interativas e mais motivantes. Importa salientar que ao longo dos diversos debates surgiram, ainda, mais questões que foram muito úteis, pois os alunos aquando da realização das atividades práticas tentaram sempre ir em busca das respostas às suas inquietações e ajudaram a que a professora investigadora implementasse, ainda mais, atividades para que os alunos conseguissem por eles próprios encontrar as respostas e percebessem o que estavam a trabalhar; as aulas foram importantes para a aprendizagem dos conteúdos da disciplina e contribuíram para desmitificar a ideia de que a disciplina de Física e Química é “difícil”, pois os alunos perceberam que os conteúdos abordados podem de uma forma simples e eficaz serem aplicados a situações do seu dia-a-dia. Assim, considerando os pressupostos anteriores, podemos afirmar que as estratégias implementadas foram, de uma forma geral, promotoras de motivação, de participação dos alunos nas aulas e nas suas aprendizagens. Estamos convictos de que toda a metodologia adotada é uma forte contribuição para o Ensino nas Ciências, nomeadamente, na Física e Química, usando uma temática Conforto Térmico e que o método usado é uma ferramenta importante e inovadora para avaliar como situações de desconforto térmico podem condicionar o processo de aprendizagem dos alunos. Pensamos que este trabalho é bastante interessante para os profissionais de ensino, nomeadamente para os professores de Física e Química e de Geografia, uma vez que mostra como a partir de dados como a temperatura do ar e da humidade relativa do ar se podem fazer fascinantes estudos e envolver ativamente os alunos. Nos trabalhos desenvolvidos houve sempre o cuidado de criar metodologias dinâmicas e motivadoras, aliadas sempre à perspetiva CTSA, com vista ao melhoramento das aulas e, também, deixar uma contribuição para os colegas, profissionais de ensino, que eventualmente analisarem este documento. A metodologia adoptada permitiu encontrar respostas às questões formuladas. Por último, podemos afirmar que numa problemática energética que afeta a humanidade, os políticos através de alguns indicadores apresentados neste estudo, poderão considerar que os resultados obtidos pelos alunos são influenciados pelo ambiente térmico de cada sala de aula e que a solução de melhorar resultados é, também, criar condições de conforto térmico nas salas de aula das escolas. Partilhamos da opinião que os resultados nacionais obtidos pelos alunos por si só são redutores em análise comparativa de melhor ou pior escola em termos de ranking. Consideramos que uma escola confortável gera condições de bem-estar que condiciona o processo de aprendizagem ao longo do ano.
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The main purpose of this thesis is to investigate the potential of ionic liquids (ILs) as a new class of extractive solvents for added-value products from biomass. These include phenolic compounds (vanillin, gallic, syringic and vanillic acids), alkaloids (caffeine) and aminoacids (L-tryptophan). The interest on these natural compounds relies on the wide variety of relevant properties shown by those families and further application in the food, cosmetic and pharmaceutical industries. Aiming at developping more benign and effective extraction/purification techniques than those used, a comprehensive study was conducted using aqueous biphasic systems (ABS) composed of ILs and inorganic/organic salts. In addition, ILs were characterized by a polarity scale, using solvatochromic probes, aiming at providing prior indications on the ILs affinity for particular added-value products. Solid-liquid (S-L) extractions from biomass and using aqueous solution of ILs were also investigated. In particular, and applying and experimental factorial design to optimize the operational conditions, caffeine was extracted from guaraná seeds and spent coffee. With both types of extractions it was found that it is possible to recover the high-value compounds and to recycle the IL and salt solutions. Finally, aiming at exploring the recovery of added-value compounds from biomass using a simpler and more suistainable technique, the solubility of gallic acid, vanillin and caffeine was studied in aqueous solutions of several ILs and common salts. With the gathered results it was possible to demonstrate that ILs act as hydrotropes and that water can be used as an adequate antisolvent. This thesis describes the use of ILs towards the development of more effective and sustainable processes.
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K0.5Na0.5NbO3 (KNN), is the most promising lead free material for substituting lead zirconate titanate (PZT) which is still the market leader used for sensors and actuators. To make KNN a real competitor, it is necessary to understand and to improve its properties. This goal is pursued in the present work via different approaches aiming to study KNN intrinsic properties and then to identify appropriate strategies like doping and texturing for designing better KNN materials for an intended application. Hence, polycrystalline KNN ceramics (undoped, non-stoichiometric; NST and doped), high-quality KNN single crystals and textured KNN based ceramics were successfully synthesized and characterized in this work. Polycrystalline undoped, non-stoichiometric (NST) and Mn doped KNN ceramics were prepared by conventional ceramic processing. Structure, microstructure and electrical properties were measured. It was observed that the window for mono-phasic compositions was very narrow for both NST ceramics and Mn doped ceramics. For NST ceramics the variation of A/B ratio influenced the polarization (P-E) hysteresis loop and better piezoelectric and dielectric responses could be found for small stoichiometry deviations (A/B = 0.97). Regarding Mn doping, as compared to undoped KNN which showed leaky polarization (P-E) hysteresis loops, B-site Mn doped ceramics showed a well saturated, less-leaky hysteresis loop and a significant properties improvement. Impedance spectroscopy was used to assess the role of Mn and a relation between charge transport – defects and ferroelectric response in K0.5Na0.5NbO3 (KNN) and Mn doped KNN ceramics could be established. At room temperature the conduction in KNN which is associated with holes transport is suppressed by Mn doping. Hence Mn addition increases the resistivity of the ceramic, which proved to be very helpful for improving the saturation of the P-E loop. At high temperatures the conduction is dominated by the motion of ionized oxygen vacancies whose concentration increases with Mn doping. Single crystals of potassium sodium niobate (KNN) were grown by a modified high temperature flux method. A boron-modified flux was used to obtain the crystals at a relatively low temperature. XRD, EDS and ICP analysis proved the chemical and crystallographic quality of the crystals. The grown KNN crystals exhibit higher dielectric permittivity (29,100) at the tetragonal-to-cubic phase transition temperature, higher remnant polarization (19.4 μC/cm2) and piezoelectric coefficient (160 pC/N) when compared with the standard KNN ceramics. KNN single crystals domain structure was characterized for the first time by piezoforce response microscopy. It could be observed that <001> - oriented potassium sodium niobate (KNN) single crystals reveal a long range ordered domain pattern of parallel 180° domains with zig-zag 90° domains. From the comparison of KNN Single crystals to ceramics, It is argued that the presence in KNN single crystal (and absence in KNN ceramics) of such a long range order specific domain pattern that is its fingerprint accounts for the improved properties of single crystals. These results have broad implications for the expanded use of KNN materials, by establishing a relation between the domain patterns and the dielectric and ferroelectric response of single crystals and ceramics and by indicating ways of achieving maximised properties in KNN materials. Polarized Raman analysis of ferroelectric potassium sodium niobate (K0.5Na0.5)NbO3 (KNN) single crystals was performed. For the first time, an evidence is provided that supports the assignment of KNN single crystals structure to the monoclinic symmetry at room temperature. Intensities of A′, A″ and mixed A′+A″ phonons have been theoretically calculated and compared with the experimental data in dependence of crystal rotation, which allowed the precise determination of the Raman tensor coefficients for (non-leaking) modes in monoclinic KNN. In relation to the previous literature, this study clarifies that assigning monoclinic phase is more suitable than the orthorhombic one. In addition, this study is the basis for non-destructive assessments of domain distribution by Raman spectroscopy in KNN-based lead-free ferroelectrics with complex structures. Searching a deeper understanding of the electrical behaviour of both KNN single crystal and polycrystalline materials for the sake of designing optimized KNN materials, a comparative study at the level of charge transport and point defects was carried out by impedance spectroscopy. KNN single crystals showed lower conductivity than polycrystals from room temperature up to 200 ºC, but above this temperature polycrystalline KNN displays lower conductivity. The low temperature (T < 200 ºC) behaviour reflects the different processing conditions of both ceramics and single crystals, which account for less defects prone to charge transport in the case of single crystals. As temperature increases (T > 200 ºC) single crystals become more conductive than polycrystalline samples, in which grain boundaries act as barriers to charge transport. For even higher temperatures the conductivity difference between both is increased due to the contribution of ionic conduction in single crystals. Indeed the values of activation energy calculated to the high temperature range (T > 300 ºC) were 1.60 and 0.97 eV, confirming the charge transport due to ionic conduction and ionized oxygen vacancies in single crystals and polycrystalline KNN, respectively. It is suggested that single crystals with low defects content and improved electromechanical properties could be a better choice for room temperature applications, though at high temperatures less conductive ceramics may be the choice, depending on the targeted use. Aiming at engineering the properties of KNN polycrystals towards the performance of single crystals, the preparation and properties study of (001) – oriented (K0.5Na0.5)0.98Li0.02NbO3 (KNNL) ceramics obtained by templated grain growth (TGG) using KNN single crystals as templates was undertaken. The choice of KNN single crystals templates is related with their better properties and to their unique domain structure which were envisaged as a tool for templating better properties in KNN ceramics too. X-ray diffraction analysis revealed for the templated ceramics a monoclinic structure at room temperature and a Lotgering factor (f) of 40% which confirmed texture development. These textured ceramics exhibit a long range ordered domain pattern consisting of 90º and 180º domains, similar to the one observed in the single crystals. Enhanced dielectric (13017 at TC), ferroelectric (2Pr = 42.8 μC/cm2) and piezoelectric (d33 = 280 pC/N) properties are observed for textured KNNL ceramics as compared to the randomly oriented ones. This behaviour is suggested to be due to the long range ordered domain patterns observed in the textured ceramics. The obtained results as compared with the data previously reported on texture KNN based ceramics confirm that superior properties were found due to ordered repeated domain pattern. This study provides an useful approach towards properties improvement of KNN-based piezoelectric ceramics. Overall, the present results bring a significant contribution to the pool of knowledge on the properties of sodium potassium niobate materials: a relation between the domain patterns and di-, ferro-, and piezo-electric response of single crystals and ceramics was demonstrated and ways of engineering maximised properties in KNN materials, for example by texturing were established. This contribution is envisaged to have broad implications for the expanded use of KNN over the alternative lead-based materials.
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For the past decades it has been a worldwide concern to reduce the emission of harmful gases released during the combustion of fossil fuels. This goal has been addressed through the reduction of sulfur-containing compounds, and the replacement of fossil fuels by biofuels, such as bioethanol, produced in large scale from biomass. For this purpose, a new class of solvents, the Ionic Liquids (ILs), has been applied, aiming at developing new processes and replacing common organic solvents in the current processes. ILs can be composed by a large number of different combinations of cations and anions, which confer unique but desired properties to ILs. The ability of fine-tuning the properties of ILs to meet the requirements of a specific application range by mixing different cations and anions arises as the most relevant aspect for rendering ILs so attractive to researchers. Nonetheless, due to the huge number of possible combinations between the ions it is required the use of cheap predictive approaches for anticipating how they will act in a given situation. Molecular dynamics (MD) simulation is a statistical mechanics computational approach, based on Newton’s equations of motion, which can be used to study macroscopic systems at the atomic level, through the prediction of their properties, and other structural information. In the case of ILs, MD simulations have been extensively applied. The slow dynamics associated to ILs constitutes a challenge for their correct description that requires improvements and developments of existent force fields, as well as larger computational efforts (longer times of simulation). The present document reports studies based on MD simulations devoted to disclose the mechanisms of interaction established by ILs in systems representative of fuel and biofuels streams, and at biomass pre-treatment process. Hence, MD simulations were used to evaluate different systems composed of ILs and thiophene, benzene, water, ethanol and also glucose molecules. For the latter molecules, it was carried out a study aiming to ascertain the performance of a recently proposed force field (GROMOS 56ACARBO) to reproduce the dynamic behavior of such molecules in aqueous solution. The results here reported reveal that the interactions established by ILs are dependent on the individual characteristics of each IL. Generally, the polar character of ILs is deterministic in their propensity to interact with the other molecules. Although it is unquestionable the advantage of using MD simulations, it is necessary to recognize the need for improvements and developments of force fields, not only for a successful description of ILs, but also for other relevant compounds such as the carbohydrates.
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Estuaries are poles of attraction for human settlement which is a source of pressures to surface water bodies. The implementation of the European Water Framework Directive (WDF, 2000/60/EC) has increased the investigation in order to develop methodologies to assess the Ecological Quality Status (EQS) of aquatic ecosystems. Transitional systems are naturally stressed and characterized by highly dynamic physical, chemical and hydro-morphologic conditions and by species with a higher level of tolerance to change, being more difficult to develop suitable quality indicators for these systems. The general purpose of this study is to test the ability of synthesis descriptors, including primary (S, taxa richness) and derived biological variable (H’, Shannon-Wiener diversity), biotic indices (AMBI and M-AMBI), body size properties (abundance distribution by body size classes, length, weight and length-weight relationships) and non-taxonomic indices (ISS), as well as functional indicators related to the decomposition rates of various experimental substrates, a macrophyte (Phragmites australis) and an alga (Fucus vesiculosus), to evaluate the environmental quality in transitional systems. This study was carried out in one of the most pristine channels of the Ria the Aveiro, Mira Channel, along a full salinity gradient and in a metals and metalloid sediment contamination area, the Estarreja Channel, and two reference channels (Canelas and Salreu). In this study were used different sampling techniques, the leaf-bag technique and a hand-held corer. In Mira Channel, the alga and the macrophyte presented an opposite trend in the decomposition rate along the salinity gradient, with the decomposition rates of the alga always higher than those of the macrophyte. The decomposition rates of the macrophyte and the alga were higher in the mid estuary and in higher salinity areas, respectively, corresponding to the preferencial distribution areas of each species. The macrobenthic fauna associated with the decaying and an artificial substrate (control) showed equally well the benthic succession from the marine to the freshwater areas and, despite the strong differences in the decay rates, no significant differences were found between the benthic communities associated with the alga and the macrophyte. The body size properties of the macrobenthic fauna associated with the P. australis leaf-bag (1mm and 5mm) and corer samples were studied along the full salinity gradient. The dominant species of the sub-set of measured specimens were not the same of the original macrobenthic fauna sampled but, despite that, the sub-set of measured specimens was also able to show the benthic succession from the marine to the freshwater areas. The body size abundance distribution of the benthic macroinvertebrates according to the ISS size classes did not show a particular trend in any sampler along the salinity gradient. Significant differences were found in the length, weight and length-weight relationships of Annelids, , Molluscs and even some species along the salinity gradient. No significant differences were found in the AMBI, M-AMBI and ISS values along the salinity gradient for all the samplers. The EQS of the corer samples obtained using the M-AMBI was lower than that of the leaf-bags. The EQS obtained with the ISS was higher than that obtained with the M-AMBI in the leaf-bags but not in the corer samples. The ecological effects of contaminated sediments associated with the industrial chemical effluents discharged in the Estarreja Channel were studied a decade after ceasing the emissions, using the Sediment Quality Triad approach and two reference channels. The results showed that despite the emissions ceased in 2004, the sediment remains polluted with high levels of metals and metalloid, available to bioaccumulation and with severe consequences at the community level. The sediment contamination problem was also studied using the leaf-bag technique with a macrophyte, an alga and a control substrate. The results showed that the decay rates, the associated macrofauna and the application of the AMBI, M-AMBI and ISS indices to the mesh-bag samples were not able to identify the sediment contamination. Contrarily to the AMBI, the M-AMBI and the ISS showed significant differences between the contaminated and the reference channels for the corer samples. Although such statistical significance, the interest of using these complex biotic indices could be questioned, when much simple ones, like the S and H’ allow to reach the same conclusions.
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Bacterial infections are an increasing problem for human health. In fact, an increasing number of infections are caused by bacteria that are resistant to most antibiotics and their combinations. Therefore, the scientific community is currently searching for new solutions to fight bacteria and infectious diseases, without promoting antimicrobial resistance. One of the most promising strategies is the disruption or attenuation of bacterial Quorum Sensing (QS), a refined system that bacteria use to communicate. In a QS event, bacteria produce and release specific small chemicals, signal molecules - autoinducers (AIs) - into the environment. At the same time that bacterial population grows, the concentration of AIs in the bacterial environment increases. When a threshold concentration of AIs is reached, bacterial cells respond to it by altering their gene expression profile. AIs regulate gene expression as a function of cell population density. Phenotypes mediated by QS (QSphenotypes) include virulence factors, toxin production, antibiotic resistance and biofilm formation. In this work, two polymeric materials (linear polymers and molecularly imprinted nanoparticles) were developed and their ability to attenuate QS was evaluated. Both types of polymers should to be able to adsorb bacterial signal molecules, limiting their availability in the extracellular environment, with expected disruption of QS. Linear polymers were composed by one of two monomers (itaconic acid and methacrylic acid), which are known to possess strong interactions with the bacterial signal molecules. Molecularly imprinted polymer nanoparticles (MIP NPs) are particles with recognition capabilities for the analyte of interest. This ability is attained by including the target analyte at the synthesis stage. Vibrio fischeri and Aeromonas hydrophila were used as model species for the study. Both the linear polymers and MIP NPs, tested free in solutions and coated to surfaces, showed ability to disrupt QS by decreasing bioluminescence of V. fischeri and biofilm formation of A. hydrophila. No significant effect on bacterial growth was detected. The cytotoxicity of the two types of polymers to a fibroblast-like cell line (Vero cells) was also tested in order to evaluate their safety. The results showed that both the linear polymers and MIP NPs were not cytotoxic in the testing conditions. In conclusion, the results reported in this thesis, show that the polymers developed are a promising strategy to disrupt QS and reduce bacterial infection and resistance. In addition, due to their low toxicity, solubility and easy integration by surface coating, the polymers have potential for applications in scenarios where bacterial infection is a problem: medicine, pharmaceutical, food industry and in agriculture or aquaculture.