993 resultados para Estrutura tubular


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This work was focused on the analysis of transport, thermomechanical and electrochemical properties of a series of perovskite-like oxide materials and composites for potential applications as anodes of intermediate-temperature solid oxide fuel cells (SOFCs) with lanthanum gallate and silicate solid electrolytes. The primary attention was centered on A(Mn,Nb)O3-δ (A = Sr, Ca) and (La,Sr)(Mn,Ti)O3-based systems, lanthanum chromite substituted with acceptor-type and variable-valence cations, and various Ni-containing cermets. Emphasis was given to phase stability of the materials, their crystal structure, microstructure of porous electrode layers and dense ceramics, electronic conductivity, Seebeck coefficient, oxygen permeability, thermal and chemical induced expansion, and anodic overpotentials of the electrodes deposited onto (La,Sr)(Ga,Mg)O3- and La10(Si,Al)6O27- based electrolyte membranes. In selected cases, roles of oxygen diffusivity, states of the transition metal cations relevant for the electronic transport, catalytically active additives and doped ceria protective interlayers introduced in the model electrochemical cells were assessed. The correlations between transport properties of the electrode materials and electrochemical behavior of porous electrodes showed that the principal factors governing anode performance include, in particular, electronic conduction of the anode compositions and cation interdiffusion between the electrodes and solid electrolytes. The latter is critically important for the silicatebased electrolyte membranes, leading to substantially worse anode properties compared to the electrochemical cells with lanthanum gallate solid electrolyte. The results made it possible to select several anode compositions exhibiting lower area-specific electrode resistivity compared to known analogues, such as (La,Sr)(Cr,Mn)O3-δ.

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This work is about the combination of functional ferroelectric oxides with Multiwall Carbon Nanotubes for microelectronic applications, as for example potential 3 Dimensional (3D) Non Volatile Ferroelectric Random Access Memories (NVFeRAM). Miniaturized electronics are ubiquitous now. The drive to downsize electronics has been spurred by needs of more performance into smaller packages at lower costs. But the trend of electronics miniaturization challenges board assembly materials, processes, and reliability. Semiconductor device and integrated circuit technology, coupled with its associated electronic packaging, forms the backbone of high-performance miniaturized electronic systems. However, as size decreases and functionalization increases in the modern electronics further size reduction is getting difficult; below a size limit the signal reliability and device performance deteriorate. Hence miniaturization of siliconbased electronics has limitations. On this background the Road Map for Semiconductor Industry (ITRS) suggests since 2011 alternative technologies, designated as More than Moore; being one of them based on carbon (carbon nanotubes (CNTs) and graphene) [1]. CNTs with their unique performance and three dimensionality at the nano-scale have been regarded as promising elements for miniaturized electronics [2]. CNTs are tubular in geometry and possess a unique set of properties, including ballistic electron transportation and a huge current caring capacity, which make them of great interest for future microelectronics [2]. Indeed CNTs might have a key role in the miniaturization of Non Volatile Ferroelectric Random Access Memories (NVFeRAM). Moving from a traditional two dimensional (2D) design (as is the case of thin films) to a 3D structure (based on a tridimensional arrangement of unidimensional structures) will result in the high reliability and sensing of the signals due to the large contribution from the bottom electrode. One way to achieve this 3D design is by using CNTs. Ferroelectrics (FE) are spontaneously polarized and can have high dielectric constants and interesting pyroelectric, piezoelectric, and electrooptic properties, being a key application of FE electronic memories. However, combining CNTs with FE functional oxides is challenging. It starts with materials compatibility, since crystallization temperature of FE and oxidation temperature of CNTs may overlap. In this case low temperature processing of FE is fundamental. Within this context in this work a systematic study on the fabrication of CNTs - FE structures using low cost low temperature methods was carried out. The FE under study are comprised of lead zirconate titanate (Pb1-xZrxTiO3, PZT), barium titanate (BaTiO3, BT) and bismuth ferrite (BiFeO3, BFO). The various aspects related to the fabrication, such as effect on thermal stability of MWCNTs, FE phase formation in presence of MWCNTs and interfaces between the CNTs/FE are addressed in this work. The ferroelectric response locally measured by Piezoresponse Force Microscopy (PFM) clearly evidenced that even at low processing temperatures FE on CNTs retain its ferroelectric nature. The work started by verifying the thermal decomposition behavior under different conditions of the multiwall CNTs (MWCNTs) used in this work. It was verified that purified MWCNTs are stable up to 420 ºC in air, as no weight loss occurs under non isothermal conditions, but morphology changes were observed for isothermal conditions at 400 ºC by Raman spectroscopy and Transmission Electron Microscopy (TEM). In oxygen-rich atmosphere MWCNTs started to oxidized at 200 ºC. However in argon-rich one and under a high heating rate MWCNTs remain stable up to 1300 ºC with a minimum sublimation. The activation energy for the decomposition of MWCNTs in air was calculated to lie between 80 and 108 kJ/mol. These results are relevant for the fabrication of MWCNTs – FE structures. Indeed we demonstrate that PZT can be deposited by sol gel at low temperatures on MWCNTs. And particularly interesting we prove that MWCNTs decrease the temperature and time for formation of PZT by ~100 ºC commensurate with a decrease in activation energy from 68±15 kJ/mol to 27±2 kJ/mol. As a consequence, monophasic PZT was obtained at 575 ºC for MWCNTs - PZT whereas for pure PZT traces of pyrochlore were still present at 650 ºC, where PZT phase formed due to homogeneous nucleation. The piezoelectric nature of MWCNTs - PZT synthesised at 500 ºC for 1 h was proved by PFM. In the continuation of this work we developed a low cost methodology of coating MWCNTs using a hybrid sol-gel / hydrothermal method. In this case the FE used as a proof of concept was BT. BT is a well-known lead free perovskite used in many microelectronic applications. However, synthesis by solid state reaction is typically performed around 1100 to 1300 ºC what jeopardizes the combination with MWCNTs. We also illustrate the ineffectiveness of conventional hydrothermal synthesis in this process due the formation of carbonates, namely BaCO3. The grown MWCNTs - BT structures are ferroelectric and exhibit an electromechanical response (15 pm/V). These results have broad implications since this strategy can also be extended to other compounds of materials with high crystallization temperatures. In addition the coverage of MWCNTs with FE can be optimized, in this case with non covalent functionalization of the tubes, namely with sodium dodecyl sulfate (SDS). MWCNTs were used as templates to grow, in this case single phase multiferroic BFO nanorods. This work shows that the use of nitric solvent results in severe damages of the MWCNTs layers that results in the early oxidation of the tubes during the annealing treatment. It was also observed that the use of nitric solvent results in the partial filling of MWCNTs with BFO due to the low surface tension (<119 mN/m) of the nitric solution. The opening of the caps and filling of the tubes occurs simultaneously during the refluxing step. Furthermore we verified that MWCNTs have a critical role in the fabrication of monophasic BFO; i.e. the oxidation of CNTs during the annealing process causes an oxygen deficient atmosphere that restrains the formation of Bi2O3 and monophasic BFO can be obtained. The morphology of the obtained BFO nano structures indicates that MWCNTs act as template to grow 1D structure of BFO. Magnetic measurements on these BFO nanostructures revealed a week ferromagnetic hysteresis loop with a coercive field of 956 Oe at 5 K. We also exploited the possible use of vertically-aligned multiwall carbon nanotubes (VA-MWCNTs) as bottom electrodes for microelectronics, for example for memory applications. As a proof of concept BiFeO3 (BFO) films were in-situ deposited on the surface of VA-MWCNTs by RF (Radio Frequency) magnetron sputtering. For in situ deposition temperature of 400 ºC and deposition time up to 2 h, BFO films cover the VA-MWCNTs and no damage occurs either in the film or MWCNTs. In spite of the macroscopic lossy polarization behaviour, the ferroelectric nature, domain structure and switching of these conformal BFO films was verified by PFM. A week ferromagnetic ordering loop was proved for BFO films on VA-MWCNTs having a coercive field of 700 Oe. Our systematic work is a significant step forward in the development of 3D memory cells; it clearly demonstrates that CNTs can be combined with FE oxides and can be used, for example, as the next 3D generation of FERAMs, not excluding however other different applications in microelectronics.

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Tese dout., Ciências do Mar, Universidade do Algarve, 2006

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O elevado grau de fluidez da quadra tradicional – que participa da mutabilidade e flexibilidade características de toda a literatura de transmissão oral – faz dela um espaço complexo, movediço e resistente a quadros taxinómicos rígidos ou definitivos. Partindo desse pressuposto, quisemos determinar neste artigo as principais linhas de instabilidade desta forma poética e os seus principais processos de edificação, nos planos estrutural e formal. Procurámos demonstrar que a quadra encerra uma força de conflito decorrente de uma dialéctica de abertura e de fechamento, relacionada com impulsos quer de condensação e fixação quer de intensificação ou derivação de sentidos.

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Dissertação de mest., Finanças Empresariais, Faculdade de Economia, Univ. do Algarve, 2003

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Dissertação de mest., Arquitectura Paisagista, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2010

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Dissertação de mest., Finanças Empresariais, Faculdade de Economia, Univ. do Algarve, 2003

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Dissertação de mest., Biologia Marinha (Ecologia e Conservação Marinha), Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2011

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Dissertação de mest., Geomática (Ciências da Informação Geográfica), Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2011

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Dissertação de mest., Arquitectura Paisagista, Faculdade de Ciências e Tecnologia, Univ. do Algarve, 2011

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Desenvolveu-se um Sistema de Vídeo Submerso Iscado (SVSI) viavelmente adaptado para caracterizar comunidades de peixes do substrato rochoso subtidal (forma não-destrutiva e não-invasiva), entre 5 e 50 metros, na costa sul de Portugal (Algarve). Entre Junho e Julho de 2013, amostraram-se 15 pontos na zona Greta (Praia de Faro), divididos em 3 Amostragens (A1, A2, A3) com isco sardinha, mexilhão e sem isco. Captaram-se foto-sequências de intervalo 1 segundo durante 60 minutos e as imagens resultantes processadas qualitativa e quantitativamente para obtenção de resultados. Registaram-se 32 espécies no total. Os tempos de entrada do 1º indivíduo de cada espécie permitiram aferir 30 minutos máximos de filmagem SVSIs para resultados viáveis, enquanto abundâncias por número de indivíduos comprovaram o isco sardinha como mais eficaz e com maior poder atrativo (do que mexilhão). As espécies Coris julis, Diplodus vulgaris, Diplodus cervinus, Diplodus sargus e Serranus cabrilla foram as mais interventivas no estudo, cujo intervalo de tempo entre contagens se adequou em 30 segundos. O estudo de índices de abundâncias e Nmax mostraram não existirem diferenças entre as comunidades ictiológicas de cada tipo de iscagem, contudo existem diferenças dentro da comunidade geral em si do substrato rochoso. A análise alimentar pelo menor tempo de 1ª alimentação indicou Coris julis, Diplodus vulgaris, Serranus cabrilla e Octopus vulgaris como as espécies mais rápidas a morder os iscos. No geral, 69% das espécies preferiram isco sardinha. Comportamentos como a passagem esporádica, territorialidade e interações com a câmara foram as ações dominantes na análise comportamental. Esta técnica e respetiva metodologia foram o primeiro estudo do género nesta região, que de forma simples, se mostrou uma boa ferramenta metodológica para estudos marinhos sobre comunidades, suas preferências alimentares, abundâncias e tempos de reação, aconselhando-se o seu desenvolvimento tecnológico e melhoramento metodológico analítico dos resultados no futuro.

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A incapacidade para reconhecer e expressar adequadamente emoções tem sido comumente verificada em grupos clínicos com perturbação do desenvolvimento (e.g. autismo). Alguns autores verificaram semelhanças no comportamento emocional entre sujeitos com perturbação do desenvolvimento e sujeitos com perturbações clinicas e da personalidade. Neste contexto, o estudo da personalidade patológica e normal passou a ser alvo de interesse por parte de autores dedicados ao estudo do processamento de emoções e da sua influência no comportamento social. Neste sentido, e à semelhança do que tem sido realizado em estudos recentes, foi nosso objetivo avaliar de que forma os diferentes traços de personalidade influenciam a capacidade para reconhecer emoções básicas através da face. Para tal, foram testados 72 participantes da população geral (42 mulheres e 30 homens) com uma média de idades de 23.29 (± 3.38) anos e uma média de escolaridade de 15.47 (± 2.13) anos. Todos os sujeitos responderam a um instrumento de personalidade e psicopatologia (Inventário Clínico Multiaxial de Millon- III) sendo posteriormente distribuídos por duas análises: Análise 1- Grupo sem sintomatologia composto pelos grupos: personalidade histriónica (N=18), personalidade compulsiva (N=18) e personalidade narcisista (N=13); e Análise 2- Grupo com sintomatologia que se subdivide em: grupo com ansiedade (N=13), grupo com hipomania (N=8) e grupo sem sintomas (N=13). Depois de avaliada a estrutura de personalidade e as funções executivas, os participantes responderam a uma tarefa visual para a avaliação do processamento de emoções básicas com recurso ao software Presentation. Os principais resultados revelam diferenças significativas para o processamento da emoção tristeza no grupo sem sintomatologia, com o grupo com características de personalidade narcisista a revelar uma menor acuidade que os restantes grupos. No grupo com sintomatologia, o grupo com ansiedade apresentou uma menor acuidade na emoção raiva, quando comparado com o grupo saudável. Estes resultados são discutidos tendo por base um quadro concetual que sugere que o processamento de emoções básicas varia de acordo com a estrutura de personalidade.

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Dissertação de Mestrado, Ciências da Educação, Escola Superior de Educação, Universidade do Algarve, 1998

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Dissertação de mestrado, Finanças Empresariais, Faculdade de Economia, Universidade do Algarve, 2014