983 resultados para spectrophotometry UV-VIS
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É sabido que devido à escassez de água potável, nomeadamente em países sub-desenvolvidos, morrem milhares de pessoas por ano, com a procura de fontes de água alternativas, que por sua vez se encontram contaminadas com microrganismos patogénicos; a este facto também se salienta a possibilidade de ocorrência de catástrofes naturais, tornando-se necessário o desenvolvimento de sistemas de desinfecção prácticos, de baixo custo e eficientes. O trabalho experimental desenvolvido focou-se nestas realidades, tendo por objectivo principal o desenvolvimento de um papel bactericida, em particular, um papel de baixo custo como é o caso do papel de filtro de café, para aplicação em desinfecção de água. Este papel foi funcionalizado com nanopartículas sintetizadas de prata, óxido de zinco e com ambas, assim como com nanopartículas comerciais, cuja caracterização foi feita por Microscopia Electrónica de Varrimento (SEM, Scanning Electron Microscopy), Energia Dispersiva de Raios-X (EDS, Energy-dispersive X-ray Spectroscopy), Espectroscopia de Ultravioleta-Visível (UV-VIS Uv-Visible Spectroscopy), Difracção de Raios-X (DRX, X-Rays Diffraction), Análise Termogravimétrica (TA, Thermal Analysis), e Calorimetria Diferencial de Varrimento (DSC, Differencial Scanning Calorimetry) e a actividade anti-bacteriana dos papéis foi avaliada através de Testes de Sensibilidade aos Antibióticos, pelo Método de Kirby-Bauer, contra as bactérias S.a.ATCC25923 e E.coli ATCC25922. No decorrer das sínteses variaram-se alguns parâmetros consoante o tipo de nanopartícula, para as np´s de prata variou-se essencialmente a metodologia de síntese e o tipo de redutor, para as np´s de óxido de zinco, dado ser um composto fotossensível, submeteu-se o papel á luz ultravioleta, o que, por outro lado também esterelizava o papel, e para ter uma comparação, esterelizou-se também o papel pela autoclave, constatando-se, pelas técnicas de caracterização, nomeadamente DRX, que os papeis não continham nanopartículas de óxido de zinco mas sim de acetato de zinco. Surpreendentemente, nos papéis autoclavados já se detectou a presença de óxido de zinco. Com os papéis que evidenciararam maior actividade anti-bacteriana realizaram-se filtrações de membrana com amostras de água contaminada e a determinação da concentração de metal no filtrado foi realizada pela técnica de Espectroscopia de Absorção Atómica de Chama (Flame Atomic Absorption Spectroscopy) conseguindo-se uma taxa de redução bacteriana de practicamente 100% para E.coli NCTC 9001 e E.f NCTC775 com os papéis contendo acetato de zinco numa concentração de 50 mM e np´sAg e acetato de zinco, numa concentração de 10 mM. De forma a validar o trabalho desenvolvido a parte final consistiu em testar os filtros com melhores propriedades em águas contaminadas, tendo esse trabalho sido feito no Laboratório de Água de Consumo dos Serviços Municipalizados de Água e Saneamento de Almada.
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Os polímeros são materiais de grande interesse científico e tecnológico já que podem ser utilizados no desenvolvimento de dispositivos para aplicação em electrónica e fotónica. Tendo em conta a sua aplicação em dispositivos de conversão de energia solar em energia eléctrica, o estudo das propriedades eléctricas e ópticas de filmes destes materiais, quando irradiados por radiação ultravioleta e visível, é fundamental. Neste trabalho caracterizaram-se as propriedades eléctricas e ópticas de filmes finos obtidos pelas técnicas de derramamento e de camada-por-camada (Layer-by-Layer (LbL)) obtidos a partir do poli(cloreto de xilideno tetrahidrotiofeno) (PTHT) que após aquecimento é convertido em poli(p-fenileno vinileno) (PPV). Assim, e através da técnica de derramamento, foram preparados filmes sobre suportes sólidos com eléctrodos interdigitais de forma a proceder à medição da condutividade em modo de corrente alternada (AC), isto é, à medição da resistência e da capacidade em função da frequência. Verificou-se, portanto, que a presença de luz leva à formação de portadores de carga, ou seja, na presença de luminosidade os filmes apresentam uma menor capacitância e resistência, para além de degradar o material. Esta degradação foi verificada, também, a partir da espectrofotometria de Ultravioleta-Visível (UV-Vis) e de infravermelho (IV). Medições de condutividade de volume, isto é, colocando os filmes entre eléctrodos paralelos de funções de trabalho diferentes, permitiram traçar as curvas características e verificar que os dispositivos obtidos se comportam como díodos. Recorreu-se, também, a técnicas de espectrofotometria de ultravioleta do vácuo (VUV) e UV-Vis para caracterizar filmes LbL obtidos a partir do PTHT e de um polieletrólito comum o poli(estireno sulfonado) (PSS) antes e após aquecimento. Os espectros obtidos, após análise dos picos, mostram que a técnica de VUV é a técnica indicada para analisar a conversão do PTHT em PPV. Este trabalho permitiu concluir que as propriedades eléctricas e ópticas destes filmes, estão dependentes da presença de luminosidade, de oxigénio e da humidade relativa pelo que dispositivos obtidos a partir deste polímero devem ser, sempre, encapsulados.
Resumo:
Os polímeros são materiais de grande interesse científico e tecnológico já que podem ser utilizados no desenvolvimento de dispositivos para aplicação em electrónica e fotónica. Tendo em conta a sua aplicação em dispositivos de conversão de energia solar em energia eléctrica, o estudo das propriedades eléctricas e ópticas de filmes destes materiais, quando irradiados por radiação ultravioleta e visível, é fundamental. Neste trabalho caracterizaram-se as propriedades eléctricas e ópticas de filmes finos obtidos pelas técnicas de derramamento e de camada-por-camada (Layer-by-Layer (LbL)) obtidos a partir do poli(cloreto de xilideno tetrahidrotiofeno) (PTHT) que após aquecimento é convertido em poli(p-fenileno vinileno) (PPV). Assim, e através da técnica de derramamento, foram preparados filmes sobre suportes sólidos com eléctrodos interdigitais de forma a proceder à medição da condutividade em modo de corrente alternada (AC), isto é, à medição da resistência e da capacidade em função da frequência. Verificou-se, portanto, que a presença de luz leva à formação de portadores de carga, ou seja, na presença de luminosidade os filmes apresentam uma menor capacitância e resistência, para além de degradar o material. Esta degradação foi verificada, também, a partir da espectrofotometria de Ultravioleta-Visível (UV-Vis) e de infravermelho (IV). Medições de condutividade de volume, isto é, colocando os filmes entre eléctrodos paralelos de funções de trabalho diferentes, permitiram traçar as curvas características e verificar que os dispositivos obtidos se comportam como díodos. Recorreu-se, também, a técnicas de espectrofotometria de ultravioleta do vácuo (VUV) e UV-Vis para caracterizar filmes LbL obtidos a partir do PTHT e de um polieletrólito comum o poli(estireno sulfonado) (PSS) antes e após aquecimento. Os espectros obtidos, após análise dos picos, mostram que a técnica de VUV é a técnica indicada para analisar a conversão do PTHT em PPV. Este trabalho permitiu concluir que as propriedades eléctricas e ópticas destes filmes, estão dependentes da presença de luminosidade, de oxigénio e da humidade relativa pelo que dispositivos obtidos a partir deste polímero devem ser, sempre, encapsulados.
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Calcium carbonate biomineralization is a self-assembly process that has been studied to be applied in the biomedical field to encapsulate biomolecules. Advantages of engineering mineral capsules include improved drug loading efficiencies and protection against external environment. However, common production methods result in heterogeneous capsules and subject biomolecules to heat and vibration which cause irreversible damage. To overcome these issues, a microfluidic device was designed, manufactured and tested in terms of selectivity for water and oil to produce a W/O/W emulsion. During the development of this work there was one critical challenge: the selective functionalization in closed microfluidic channels. Wet chemical oxidation of PDMS with 1M NaOH, confirmed by FTIR, followed by adsorption of polyelectrolytes - PDADMAC/PSS - confirmed by UV-Vis and AFM results, render the surface of PDMS hydrophilic. UV-Vis spectroscopy also confirmed that this modification did not affect PDMS optical properties, making possible to monitor fluids and droplets. More important, with this approach PDMS remains hydrophilic over time. However, due to equipment constrains selectivity in microchannels was not achieved. Therefore, emulsion studies took place with conventional methods. Several systems were tried, with promising results achieved with CaCO3 in-situ precipitation, without the use of polymers or magnesium. This mineral stabilizes oil droplets in water, but not in air due to incomplete capsule formation.
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In this work two different procedures to utilize the sol-gel technology were applied to immobilize/encapsulate enzymes and living cells. CO2 has reached levels in the atmosphere that make it a pollutant. New methods to utilize this gas to obtain products of added value can be very important, both from an environmentally point of view and from an economic standpoint. The first goal of this work was to study the first reaction of a sequential, three-step, enzymatic process that carries out the conversion of CO2 to methanol. Of the three oxidoreductases involved, our focus was on formate dehydrogenase (FateDH) that converts CO2 to formate. This reaction requires the presence of the cofactor β-nicotinamide adenine dinucleotide in reduced form (NADH). The cofactor is expensive and unstable. Our experiments were directed towards generating NADH from its oxidized form (NAD+), using glutamate dehydrogenase (GDH). The formation of NADH from NAD+ in aqueous medium was studied with both free and sol-gel entrapped GDH. This reaction was then followed by the conversion of CO2 to formate, catalysed by free or sol-gel entrapped FateDH. The quantification of NADH/NAD+ was made using UV/Vis spectroscopy. Our results showed that it was possible to couple the GDH-catalyzed generation of the cofactor NADH with the FateDH-catalyzed conversion of CO2, as confirmed by the detection of formate in the medium, using High Performance Liquid Chromatography (HPLC). The immobilization of living cells can be advantageous from the standpoint of ease of recovery, reutilization and physical separation from the medium. Also dead cells may not always exhibit enzymatic activities found with living cells. In this work cell encapsulation was performed using Escherichia coli bacteria. To reduce toxicity for living organisms, the sol-gel method was different than for enzymes, and involved the use of aqueous-based precursors. Initial encapsulation experiments and viability tests were carried out with E. coli K12. Our results showed that sol-gel entrapment of the cells was achieved, and that cell viability could be increased with additives, namely betaine that led to greater viability improvement and was selected for further studies. For an approach to “in-cell” Nuclear Magnetic Resonance (NMR) experiments, the expression of the protein ctCBM11 was performed in E. coli BL21. It was possible to obtain an NMR signal from the entrapped cells, a considerable proportion of which remained alive after the NMR experiments. However, it was not possible to obtain a distinctive NMR signal from the target protein to distinguish it from the other proteins in the cell.
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Tem sido atribuída ao vinho a designação de alimento antioxidante, devido ao seu alto teor em compostos polifenólicos, pelo que o seu consumo moderado pode apresentar efeitos benéficos para a saúde do consumidor. Neste trabalho foram estudados 228 vinhos portugueses monocastas (190 tintos, 30 brancos e 8 rosés), produzidos em 8 regiões do país, (Alentejo, Algarve, Península de Setúbal, Lisboa, Tejo, Verdes, Dão e Trás-os-Montes e Alto Douro) a partir de 12 castas tintas (Alfrocheiro, Alicante Bouschet, Aragonez-Tinta Roriz, Cabernet Sauvignon, Castelão, Merlot, Petit Verdot, Syrah, Tinta Miúda, Touriga Nacional, Trincadeira e Vinhão) e 6 castas brancas (Antão Vaz, Arinto, Chardonnay, Fernão Pires, Malvasia Fina e Verdelho). Estes vinhos foram avaliados quanto à sua composição fenólica por HPLC-DAD, propriedades antioxidantes (reacção de Folin-Ciocalteu, poder de redução férrica, FRAP e capacidade de sequestração do radical DPPH) e foram caracterizados por UV-VIS. Observaram-se correlações fortes entre as actividades antioxidantes dos vinhos e as suas características cromáticas, nomeadamente as suas absorvâncias a 420, 520 e 620 nm, mas também com as absorvâncias a 280 nm, 320 nm ou 360 nm que correspondem a compostos fenólicos não corados. As castas Alicante Bouschet e Petit Verdot destacaram-se quanto às suas propriedades antioxidantes, enquanto as regiões da Península de Setúbal e do Dão revelaram ter características que favorecem a actividade antioxidante dos vinhos nelas produzidos, por comparação com vinhos das mesmas castas produzidos noutras regiões. A análise de HPLC permitiu detectar 52 compostos fenólicos (17 ácidos hidroxibenzóicos ou derivados, 8 flavanóis ou procianidinas, 12 ácidos hidroxicinâmicos e 7 flavonóis) presentes na maior parte dos vinhos tintos analisados. Os resultados obtidos neste trabalho evidenciam a complexidade de factores que determinam as propriedades biológicas e composição fenólica dos vinhos tintos, rosés ou brancos, e que incluem casta, parâmetros edafo-climáticos e características do processo de vinificação.
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2,4,5-Triaryl-imidazoles are versatile compounds with application in medicine, due to their biological activity, and materials sciences, for their interesting optical properties. These properties can be tuned by careful selection of substituents at positions 2, 4 and 5: replacement of the aryl group by an heterocyclic group results in larger π-conjugated systems with improved optical properties for application in nonlinear optics, OLEDs, DNA intercalators, and chemosensors. Moreover, it is expected that introducing more conjugation and rigidity into the resulting system will further improve its properties. The development of chromo/fluorescent probes that are capable of detecting ions with high sensitivity and selectivity in aqueous media is currently a topic of strong interest and the design of heteroditopic receptors that contain two or more different binding sites for the simultaneous complexation of cationic and anionic guests is a emerging field of supramolecular chemistry. In this communication, we report the synthesis of new phenanthroimidazoles substituted at position 2 with arylthienyl or arylfuryl moieties possessing substituents of different electronic character, in order to tune the chromo/fluoro response in the presence of relevant anions and metal cations. Their photophysical properties and chemosensory ability were studied in acetonitrile and mixtures of acetonitrile and water, and selective detection of cyanide was achieved in aqueous mixtures for some of the derivatives.
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The development of organic materials displaying high two-photon absorption (TPA) has attracted much attention in recent years due to a variety of potential applications in photonics and optoelectronics, such as three-dimensional optical data storage, fluorescence imaging, two-photon microscopy, optical limiting, microfabrication, photodynamic therapy, upconverted lasing, etc. The most frequently employed structural motifs for TPA materials are donor–pi bridge–acceptor (D–pi–A) dipoles, donor–pi bridge–donor (D–pi–D) and acceptor–pi bridge-acceptor (A–pi–A) quadrupoles, octupoles, etc. In this work we present the synthesis and photophysical characterization of quadrupolar heterocyclic systems with potential applications in materials and biological sciences as TPA chromophores. Indole is a versatile building block for the synthesis of heterocyclic systems for several optoelectronic applications (chemosensors, nonlinear optical, OLEDs) due to its photophysical properties and donor electron ability and 4H-pyran-4-ylidene fragment is frequently used for the synthesis of red light-emitting materials. On the other hand, 2-(2,6-dimethyl-4H-pyran-4-ylidene)malononitrile (1) and 1,3-diethyl-dihydro-5-(2,6-dimethyl-4H-pyran-4-ylidene)-2-thiobarbituric (2) units are usually used as strong acceptor moieties for the preparation of π-conjugated systems of the push-pull type. These building blocks were prepared by Knoevenagel condensation of the corresponding ketone precursor with malononitrile or 1,3-diethyl-dihydro-2-thiobarbituric acid. The new quadrupolar 4H-pyran-4-ylidene fluorophores (3) derived from indole were prepared through condensation of 5-methyl-1H-indole-3-carbaldehyde with the acceptor precursors 1 and 2, in the presence of a catalytical amount of piperidine. The new compounds were characterized by the usual spectroscopic techniques (UV-vis., FT-IR and multinuclear NMR - 1H, 13C).
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Dissertação de mestrado em Propriedades e Tecnologias de Polímeros
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Poly(vinylidene fluoride-trifluoroethylene)/NaY zeolite composite membranes were prepared by solvent casting and evaluated as a suitable drug release platform through the evaluation of loading and release of ibuprofen. The membranes were characterized at the morphological, structural and mechanical levels. The 1H-NMR spectra indicate that only the membranes with 16 and 32 % of NaY were useful for IBU encapsulation and the drug release was followed by UV-Vis spectroscopy. The release profile is independent of the zeolite content and can be described by the Korsmeyer-Peppas model. The membrane with 32 % zeolite content releases more than double IBU amount when compared with the membrane with 16 % showing that zeolite content allows tailoring membrane drug release content for specific applications. The drug release platform developed in this work is suitable for other drugs and applications.
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Nanocomposite materials with an organic-inorganic urea-silicate (di-ureasil) based matrix containing gold nanoparticles (NPs) were synthesized and characterized by optical (UV/Vis) spectroscopy and indentation measurement. The urea silicate gels were obtained by reaction between silicon alkoxyde modified by isocyanate group and polyethylene glycol oligomer with amine terminal groups in presence of catalyst. The latter ensures the successful incorporation of citrate-stabilized gold NPs in the matrix. It is shown that using a convenient destabilizing agent (AgNO3) and governing the preparative conditions, the aggregation degree of gold NPs can be controlled. The developed synthesis procedure significantly simplifies the preparative procedure of gold/urea silicate nanocomposites, compared to the procedure using gold NPs, preliminary covered with silica shells. Mechanical properties of the prepared sample were characterised using depth sensing indentation methods (DSI) and an idea about the type of aggregation structures was suggested.
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This paper presents the results of experimental investigation on the aqueous dispersion behaviour of micro crystalline cellulose (MCC) prepared using Pluronic F-127. For this purpose, different concentrations (0.5-3.0 wt.%) of MCC were dispersed in water with the help of ultrasonication technique using various concentrations of Pluronic F-127. The homogeneity of the suspensions and agglomerations were characterized by optical and transmission electron microscopy and the concentration of well dispersed MCC was measured using UV-Vis spectroscopy. Also, the suspensions were subjected to high speed ultracentrifugation at 3000 rpm and observed visually for sedimentation and subsequently, concentration was calculated using UV-Vis, in order to assess the long term stability of the suspensions. Based on these experiments, optimum concentration of Pluronic to disperse different MCC concentrations has been suggested.
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Zeolites Y (faujasite) and MOR (mordonite) were used as hosts for temozolomide (TMZ), a current good-standard chemotherapeutic agent used in the treatment of glioblastoma brain tumors. TMZ was loaded into zeolites by liquid-phase adsorption at controlled pH. FTIR, 1H NMR, MS, SEM, UV/vis and chemical analysis demonstrated the successful loading of TMZ into zeolite hosts. The hydrolysis of TMZ in MTIC (TMZ metabolite) after the preparation of drug delivery systems (DDS) was observed in simulated body fluid. The effect of zeolites and DDS were evaluated on the viability of glioblastoma cell lines. Unloaded Y zeolite presented toxicity to cancer cells in contrast to MOR. In accordance, the best results in potentiation of the TMZ effect was obtained with MOR. We found that mordonite loaded with 0.026 mmol of TMZ was able to decrease the half maximal inhibitory concentrations (IC50) at least 3-fold in comparison to free temozolomide both in vitro and in vivo.
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Enzymatic polymerization of aniline was first performed in lignosulfonate (LGS) template system. High-redox-potential catalyst laccase, isolated from Aspergillus, was used as a biocatalyst in the synthesis of conducting polyaniline/lignosulfonate (PANI-ES-LGS) complex using atmospheric oxygen as the oxidizing agent. The linear templates (LGS), also serving as the dopants, could facilitate the directional alignment of the monomer and improve the solubility of the conducting polymer. The process of the polymerization was monitored using UV-Vis spectroscopy, by which the conditions for laccase-catalyzed synthesis of PANI-ES-LGS complex were also optimized. The structure characterizations and solubility of the complex were carried out using corresponding characterization techniques respectively. The PANI-ES-LGS suspensions obtained was used as coating for cotton with a conventional padder to explore the applications of the complex. The variable optoelectronic properties of the coated cotton were confirmed by cyclic voltammetry and color strength test. The molecular weight changes of LGS treated by laccase were also studied to discuss the mechanism of laccase catalyzed aniline polymerization in LGS template system.