6 resultados para copolymer (PVDF-TrFE)
em Repositório Científico do Instituto Politécnico de Lisboa - Portugal
Resumo:
Novel alternating copolymers comprising biscalix[4]arene-p-phenylene ethynylene and m-phenylene ethynylene units (CALIX-m-PPE) were synthesized using the Sonogashira-Hagihara cross-coupling polymerization. Good isolated yields (60-80%) were achieved for the polymers that show M-n ranging from 1.4 x 10(4) to 5.1 x 10(4) gmol(-1) (gel permeation chromatography analysis), depending on specific polymerization conditions. The structural analysis of CALIX-m-PPE was performed by H-1, C-13, C-13-H-1 heteronuclear single quantum correlation (HSQC), C-13-H-1 heteronuclear multiple bond correlation (HMBC), correlation spectroscopy (COSY), and nuclear overhauser effect spectroscopy (NOESY) in addition to Fourier transform-Infrared spectroscopy and microanalysis allowing its full characterization. Depending on the reaction setup, variable amounts (16-45%) of diyne units were found in polymers although their photophysical properties are essentially the same. It is demonstrated that CALIX-m-PPE does not form ground-or excited-state interchain interactions owing to the highly crowded environment of the main-chain imparted by both calix[4]arene side units which behave as insulators inhibiting main-chain pi-pi staking. It was also found that the luminescent properties of CALIX-m-PPE are markedly different from those of an all-p-linked phenylene ethynylene copolymer (CALIX-p-PPE) previously reported. The unexpected appearance of a low-energy emission band at 426 nm, in addition to the locally excited-state emission (365 nm), together with a quite low fluorescence quantum yield (Phi = 0.02) and a double-exponential decay dynamics led to the formulation of an intramolecular exciplex as the new emissive species.
Resumo:
The three-dimensional (3D) exact solutions developed in the early 1970s by Pagano for simply supported multilayered orthotropic composite plates and later in the 1990s extended to piezoelectric plates by Heyliger have been extremely useful in the assessment and development of advanced laminated plate theories and related finite element models. In fact, the well-known test cases provided by Pagano and by Heyliger in those earlier works are still used today as benchmark solutions. However, the limited number of test cases whose 3D exact solutions have been published has somewhat restricted the assessment of recent advanced models to the same few test cases. This work aims to provide additional test cases to serve as benchmark exact solutions for the static analysis of multilayered piezoelectric composite plates. The method introduced by Heyliger to derive the 3D exact solutions has been successfully implemented using symbolic computing and a number of new test cases are here presented thoroughly. Specifically, two multilayered plates using PVDF piezoelectric material are selected as test cases under two different loading conditions and considering three plate aspect ratios for thick, moderately thick and thin plate, in a total of 12 distinct test cases. (C) 2013 Elsevier Ltd. All rights reserved.
Resumo:
Englobado na temática do desenvolvimento de métodos in vitro para avaliação da biodisponibilidade de fármacos, este trabalho de investigação teve como objectivo a optimização de um método para avaliar em simultâneo a dissolução e permeabilidade de fármacos usando uma célula de fluxo bilateral com membranas de Polyvinylidene Fluoride (PVDF). Através de uma avaliação inicial, na qual se testou o efeito de diversas variáveis na permeabilidade da cafeína e do ácido acetilsalicílico, obtiveram-se resultados que permitiram concluir que os ensaios realizados são mais reprodutíveis, quando a célula de fluxo é utilizada em circulação unilateral no lado dador e com agitação do lado aceitador. Observou-se ainda que o método permite detectar a influência do pH (Papp da cafeína a pH 7,4 e 4,5: 4,84±1,57x105cm.s-1 e 6,00±0,70x105cm.s app do ácido acetilsalicílico a pH 7,4 e 4,5: 3,85±0,38x10-5cm.s-1 e 5,1 1±0,65x105cm.s-1) e dos excipientes (Papp da cafeína isoladamente e em presença de excipientes: 6,76±1,22 x 10-5cm.s1 e 5,84±0,43x10-5cm.s-1 app do ácido acetilsalicílico isoladamente e em presença de excipientes: 7,07±1,56x105 cm.s e 5,19±0,23x10-5cm.s1) na permeabilidade dos compostos. Na avaliação da dissolução testou-se um método descrito na United States Pharmacopeia (USP) com meio de dissolução a pH 4,5 e um método com meio de dissolução a pH 7,4 pois na perspectiva de no futuro se realizarem ensaios com membranas celulares Caco-2, foi necessário testar um meio compatível com estas. As percentagens de dissolução dos ensaios a pH 7,4 foram de 96,3% para a cafeína e de 87,1% para o ácido acetilsalicílico, o que permitiu a utilização deste meio, visto ter sido superior ao limite mínimo de 80% estabelecido pela USP. Após estabelecimento das metodologias de dissolução e permeabilidade individuais, passou-se ao acoplamento das duas técnicas, tendo sido realizados ensaios de dissolução/permeabilidade com uma forma farmacêutica contendo os dois compostos em estudo (Melhoral®), nos quais se obtiveram permeabilidades aparentes de 3,97±0,37x105cm.s1 e 3,69±0,29 x105cm.s para a cafeína e ácido acetilsalicílico a pH 4,5 e de 3,77±0,40x105cm.s e 4,08± 0,04x1 05cm.s1 para a cafeína e ácido acetilsalicílico a pH 7,4, resultados estes que foram reprodutíveis e descriminativos e que perspectivam a possibilidade da utilização do sistema para futuros trabalhos envolvendo membranas de culturas celulares (Caco-2) ou tecidos (pele ou intestino).
Resumo:
The authors extend their earlier work on the stability of a reacting binary polymer blend with respect to demixing [D. J. Read, Macromolecules 31, 899 (1998); P. I. C. Teixeira , Macromolecules 33, 387 (2000)] to the case where one of the polymers is rod-like and may order nematically. As before, the authors combine the random phase approximation for the free energy with a Markov chain model for the chemistry to obtain the spinodal as a function of the relevant degrees of reaction. These are then calculated by assuming a simple second-order chemical kinetics. Results are presented, for linear systems, which illustrate the effects of varying the proportion of coils and rods, their relative sizes, and the strength of the nematic interaction between the rods. (c) 2007 American Institute of Physics.
Resumo:
Supramolecular chirality was achieved in solutions and thin films of a calixarene-containing chiral aryleneethynylene copolymer. The observed chiroptical activity, which is primarily allied with the formation of aggregates of high molecular weight polymer chains, is the result of a combination of intrachain and interchain effects. The former arises by the adoption of an induced helix-sense by the polymer main-chain while the latter comes from the exciton coupling of aromatic backbone transitions. The co-existence of bulky bis-calixKlarene units and chiral side-chains on the polymer skeleton prevents efficient pi-stacking of neighbouring chains, keeping the chiral assembly highly emissive. In contrast, for a model polymer lacking calixarene moieties, the chiroptical activity is dominated by strong interchain exciton couplings as a result of more favourable packing of polymer chains, leading to a marked decrease of photoluminescence in the aggregate state. The enantiomeric recognition abilities of both polymers towards (R)- and (S)-alpha-methylbenzylamine were examined. It was found that a significant enantiodiscrimination is exhibited by the calixarene-based polymer in the aggregate state.
Resumo:
This study is primarily focused in establishing the solid-state sensory abilities of several luminescent polymeric calix[4]arene-based materials toward selected nitroaromatic compounds (NACs), creating the foundations for their future application as high performance materials for detection of high explosives. The phenylene ethynylene-type polymers possessing bis-calix[4]arene scaffolds in their core were designed to take advantage of the known recognition abilities of calixarene compounds toward neutral guests, particularly in solid-state, therefore providing enhanced sensitivity and selectivity in the sensing of a given analyte. It was found that all the calix[4]arene-poly(para-phenylene ethynylene)s here reported displayed high sensitivities toward the detection of nitrobenzene, 2,4-dinitrotoluene and 2,4,6-trinitrotoluene (TNT). Particularly effective and significant was the response of the films (25-60 nm of thickness) upon exposure to TNT vapor (10 ppb): over 50% of fluorescence quenching was achieved in only 10 s. In contrast, a model polymer lacking the calixarene units showed only reduced quenching activity for the same set of analytes, clearly highlighting the relevance of the macrocyclics in promoting the signaling of the transduction event. The films exhibited high photostability (less than 0.5% loss of fluorescence intensity up to 15 min of continuous irradiation) and the fluorescence quenching sensitivity could be fully recovered after exposure of the quenched films to saturated vapors of hydrazine (the initial fluorescence intensities were usually recovered within 2-5 min of exposure to hydrazine).