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\"Fotoluminescência excitada no ultravioleta em polímeros conjugados\" / Photoluminescence excited in the ultraviolet in conjugated polymersMarcelo Meira Faleiros 13 February 2007 (has links)
Os polímeros conjugados luminescentes são materiais com grande potencial tecnológico, mas apesar de estudados desde a década de 80, algumas de suas propriedades óticas ainda não foram totalmente entendidas. Por exemplo, ainda persistem dúvidas quanto à natureza das suas excitações primárias. Nesse sentido foi feito um estudo da fotoluminescência do poli[2-metoxy-5-(2-etil-hexiloxi)-1,4-fenileno vinileno] (MEH-PPV), polímero semicondutor luminescente cujas propriedades ópticas já foram muito investigadas. Além da banda de absorção principal na região visível do espectro, ele possui três bandas no ultravioleta. O objetivo deste trabalho é investigar a fotoluminescência do MEH-PPV quando excitado na região do ultravioleta. Após fotoexcitação no ultravioleta, observou-se apenas a fotoluminescência usual no visível. A intensidade da emissão depende fortemente da energia de excitação, da temperatura e da estrutura morfológica do sistema polimérico, determinada pelo método de preparação das amostras. Os resultados indicam que os estados excitados no ultravioleta relaxam rapidamente de forma não-radiativa até os estados de menor energia, de onde então ocorre a luminescência. Entretanto, a eficiência da fotoluminescência excitada no ultravioleta é consideravelmente reduzida, indicando que a excitação a altas energias abre novos canais de relaxação não-radiativos. / Luminescent semiconducting polymers are technological promising materials, but although studied since the 80s some of their optical properties have not yet been fully understood. For instance, the nature of their primary excitations is still on debate. Therefore we proposed to study the photoluminescence following photoexcitation in the ultraviolet of the polymer poly(2-methoxy-5-(2-ethyl-hexyloxy)-1,4-phenylene vinylene) (MEH-PPV). It is a semiconducting luminescent polymer with a main absorption band in the visible part of the spectrum, but with three other absorption bands in the ultraviolet. After ultraviolet photoexcitation it was observed only the usual visible photoluminescence. The intensity of photoluminescence depends strongly on temperature, excitation wavelength and morphological structure of the polymer, determined by the method of sample preparation. The results show that by ultraviolet excitation the excited states relax rapidly non-radiatively to the lower energy states, from where luminescence results. However, the photoluminescence efficiency with ultraviolet photoexcitation is considerably reduced, implying that the highly excited states in the polymer have more non-radiative relaxation channels available.
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Processamento de poli(p-fenilenovinileno) (PPV) com pulsos laser de femtossegundos: fabricação de microestruturas óptica e eletricamente ativas / Processing of poly (p-phenylenevinylene) (PPV) with femtosecond laser pulses: fabrication of optically and electrically active microstructuresOriana Ines Avila Salas 12 July 2018 (has links)
O poli (p-fenilenevinileno), ou PPV, é um polímero de grande relevância tecnológica devido a suas propriedades eletroluminescentes, que têm sido exploradas em diodos emissores de luz orgânicos, displays flexíveis e outros dispositivos optoeletrônicos. Embora o PPV seja um material de importância para muitas aplicações, a sua síntese na nano/microescala não pode ser obtida através do método padrão, o qual utiliza o aquecimento de um polímero precursor poli (cloreto de xileno tetrahidrotiofenio) (PTHT). Este trabalho mostra como a microestruturação com pulsos de femtosegundo pode ser empregada para a síntese de PPV em regiões pré-determinadas, empregando três diferentes abordagens, permitindo uma nova metodologia para a fabricação precisa de microcircuitos poliméricos complexos, (i) na primeira abordagem, o processo de conversão é obtido pela irradiação de filmes de PTHT com pulsos laser ultracurtos em regiões previamente determinadas, o que leva ao controle espacial da formação de PPV em microescala, (ii) na segunda abordagem, microestruturas tridimensionais dopadas com PTHT foram fotopolimerizadas por absorção de dois fótons. A conversão de PTHT para PPV nestas microestruturas dopadas foi obtida após um tratamento térmico, (iii) na terceira abordagem, a transferência direta induzida por laser (LIFT) com pulsos de femtossegundos permite a deposição controlada de PPV com alta resolução espacial, fornecendo micropadrões 2D, preservando sua estrutura e propriedades ópticas. As estruturas foram caracterizadas por microscopia eletrônica de varredura, microscopia óptica de transmissão, microscopia de fluorescência e microscopia confocal de fluorescência. Suas propriedades ópticas foram analisadas através de sistemas de micro-fotoluminescência e micro-absorção implementadas em um microscópio invertido. Medidas de espectroscopia Raman, microscopia de força atômica e medidas elétricas também foram realizadas. Este trabalho mostra como a microestruturação com laser de fs pode ser explorada para a síntese de PPV em regiões pré-determinadas para fabricar uma variedade de microdispositivos, abrindo novos caminhos na optoeletrônica baseada em polímeros. / Poly(p-phenylenevinylene), or PPV, is a polymer of great technological relevance due to its electroluminescent properties, which have been exploited in organic light emitting diodes, flexible displays and other optoelectronic devices. Although PPV is a material of foremost importance for many applications, its synthesis at the nano/micro scale cannot be achieved through the standard method that uses heating of a precursor polymer poly(xylene tetrahydrothiophenium chloride)(PTHT). This work demonstrates the use of direct laser writing with femtosecond pulses to obtain the synthesis of PPV in pre-determined regions, by applying three different approaches, allowing the precise fabrication of complex polymeric microcircuits, (i) in the first approach the conversion process is achieved by irradiating PTHT films with ultra-short laser pulses in previously determined regions, which leads to the spatial control of PPV formation at microscale, (ii) in the second approach, three-dimensional microstructures doped with PTHT were photopolymerized by two photons absorption. The conversion of PTHT to PPV in these doped microstructures was obtained by a subsequent thermal treatment, (iii) in the third approach, laser-induced forward transfer (LIFT) with femtosecond pulses enables the controlled deposition of PPV with high spatial resolution, providing 2D micropatterns, while preserving its structure and optical properties. The structures were characterized by scanning electron, fluorescence, transmission and confocal fluorescence microscopies. Their optical properties were analyzed by micro-photoluminescence and micro-absorption setups assembled on an inverted microscope. Raman spectroscopy, electrical measurements and atomic force microscopy were also performed. This thesis shows the use of fs-laser writing methods for the synthesis of PPV in pre-determined regions, to fabricate a variety of microdevices, thus opening new avenues in polymer-based optoelectronics.
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\"Fotoluminescência excitada no ultravioleta em polímeros conjugados\" / Photoluminescence excited in the ultraviolet in conjugated polymersFaleiros, Marcelo Meira 13 February 2007 (has links)
Os polímeros conjugados luminescentes são materiais com grande potencial tecnológico, mas apesar de estudados desde a década de 80, algumas de suas propriedades óticas ainda não foram totalmente entendidas. Por exemplo, ainda persistem dúvidas quanto à natureza das suas excitações primárias. Nesse sentido foi feito um estudo da fotoluminescência do poli[2-metoxy-5-(2-etil-hexiloxi)-1,4-fenileno vinileno] (MEH-PPV), polímero semicondutor luminescente cujas propriedades ópticas já foram muito investigadas. Além da banda de absorção principal na região visível do espectro, ele possui três bandas no ultravioleta. O objetivo deste trabalho é investigar a fotoluminescência do MEH-PPV quando excitado na região do ultravioleta. Após fotoexcitação no ultravioleta, observou-se apenas a fotoluminescência usual no visível. A intensidade da emissão depende fortemente da energia de excitação, da temperatura e da estrutura morfológica do sistema polimérico, determinada pelo método de preparação das amostras. Os resultados indicam que os estados excitados no ultravioleta relaxam rapidamente de forma não-radiativa até os estados de menor energia, de onde então ocorre a luminescência. Entretanto, a eficiência da fotoluminescência excitada no ultravioleta é consideravelmente reduzida, indicando que a excitação a altas energias abre novos canais de relaxação não-radiativos. / Luminescent semiconducting polymers are technological promising materials, but although studied since the 80s some of their optical properties have not yet been fully understood. For instance, the nature of their primary excitations is still on debate. Therefore we proposed to study the photoluminescence following photoexcitation in the ultraviolet of the polymer poly(2-methoxy-5-(2-ethyl-hexyloxy)-1,4-phenylene vinylene) (MEH-PPV). It is a semiconducting luminescent polymer with a main absorption band in the visible part of the spectrum, but with three other absorption bands in the ultraviolet. After ultraviolet photoexcitation it was observed only the usual visible photoluminescence. The intensity of photoluminescence depends strongly on temperature, excitation wavelength and morphological structure of the polymer, determined by the method of sample preparation. The results show that by ultraviolet excitation the excited states relax rapidly non-radiatively to the lower energy states, from where luminescence results. However, the photoluminescence efficiency with ultraviolet photoexcitation is considerably reduced, implying that the highly excited states in the polymer have more non-radiative relaxation channels available.
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Synthesis and Characterization of Novel Pol(arylene ethers) for Gas Separation and Water Desalination MembranesNarang, Gurtej Singh 19 June 2018 (has links)
This thesis focuses on the synthesis and characterization of various poly(arylene ether)s to improve the efficiency of gas separation and water desalination membranes. This class of polymers includes polymers such as poly(arylene ether sulfone), poly(arylene ether ketone) and poly(phenylene oxide) which offer excellent thermal and mechanical stability and usually have high enough rigidity to support gas separation and water desalination operations. Besides the plethora of properties offered by the homopolymers, these polymers can also be post-modified to cater to specific needs. For example, the polyphenylene oxides have been brominated to increase the permeability for gas separation applications. Blending is another viable method to impart desirable properties to polymers.
Bisphenol A based poly(arylene ether ketone) (BPAPAEK) has been blended with commercially available poly(2,6-dimethylphenylene oxide)s (PPO) of different molecular weights in a fixed ratio (66/34 wt/wt) and in various ratios of a 22000 g/mol PPO. All the blends were UV crosslinked to minimize plasticization by condensable gases and analyzed for gel fractions, whereas, only the 22,000 g/mol blends were tested for transport properties since they yielded the highest gel fractions and exhibited the best mechanical properties. The crosslinking reduced the free volume and improved the selectivity with some drop in permeability. The blends with 90% of the 22000 g/mol PPO by weight was plotted closest to the upperbound.
A phosphine oxide based poly(arylene ether ketone) (POPAEK) was blended with the various PPOs in a similar manner. The results were compared to the BPAPAEK based blends in terms of miscibility behavior and transport properties. It was found that the POPAEK based blends had higher permeability due to the higher fractional free volumes of the POPAEK. The POPAEK was more compatible with the PPOs than BPAPAEK as seen by analyzing various blend permeability models, mechanical properties and scanning electron microscope images. Moreover, blends with both the PAEKs displayed only a small drop in mechanical properties, such as the Young's modulus and the yield strength in comparison to the parent polymers.
Hydroquinone based poly(arylene ether sulfone) oligomers were synthesized, post-sulfonated and chemically crosslinked to determine the effect of water uptake, fixed charge concentration and block length of oligomers on the salt permeability and the hydrated mechanical properties of the networks. The sulfonic acid groups were placed strategically and quantitatively on the hydroquinone units. The strategic placement of the acid groups may help in maintaining high rejection of monovalent ions in the presence of divalent ions, as shown in unpublished work by our group. It was found that the water uptake and fixed charge density had the opposite effects on the salt permeability. Also, the salt permeability varied differently for 5000g/mol and 10000g/mol block based networks.
Another polymer that was investigated in this thesis was poly(2-ethyl-2-oxazoline) (PEtOx). An elaborate account of synthesis of monofunctional, heterobifunctional and telechelic poly(2-ethyl-2-oxazoline)s using different initiators including methyl triflate, activated alkyl halides (e.g., benzyl halides), and non-activated alkyl halides has been presented in this thesis. Endgroup functionalities and molecular weight distributions were studied by SEC, 1H NMR and titrations. The oligomers initiated with the benzyl or xylyl chloride had a PDI of 1.3-1.4 which is broader than expected for a living cationic ring opened polymer. This was attributed to the participation of covalent species which propagated slowly in the activated halide reactions. These oligomers were quantitatively terminated as proven by NMR and titrations. Due to the molecular weight distributions and quantitative termination these oligomers were deemed to be desirable for drug delivery applications. / PHD / This work pivots around the synthesis and characterization of different classes of polymers which are long molecules made by joining small molecules. The structure-property relationships of different polymers with respect to applications such as gas separation, water desalination and drug delivery were examined.
The first two projects were focused of gas separation applications. Gas separation is an essential process used to recover the required gas from a mixture of gases. This process is used in a number of industries such as natural gas, hydrogen recovery and air dehumidification. In these projects, gas separation membranes were used to remove non combustible components of natural gas such as carbon dioxide and hydrogen sulfide. Two different types of poly(arylene ether ketone)s (PAEKs) (a kind of polymer) were blended with a commercial polymer called poly(phenylene oxide) (PPO) and crosslinked at the surfaces to improve the gas transport properties of the commercial polymer. PPOs have high gas permeability and a low selectivity. In other words even though the PPO membranes would alow the gasses to pass through easily, the efficiency of gas separation would be low. The blending with the PAEKs improved the selectivity of the PPOs without much loss in throughput. These blends of the two different PAEKs were compared for transport and other relavent properties. It was found that the transport properties of the commercial polymer were improved markedly without much loss in mechanical properties which are usually sacrificed upon blending of two uncomaptible polymers.
Water desalination applications were looked into for a polymer class called polysulfones. About 40% of the world’s population lives in water stressed areas. In order to address the water crisis, there is a need to look beyond primitive methods such as distillation which are inefficient. Hence, the polymeric membrane separations which do not involve phase change (eg liquid to gas and then back to liquid in distillation) were examined. The currently used polyamide membranes have a rough surface because of the way they are made, making them prone to deposition of salt and organic matter. This deposition makes them inefficient. They are also prone to degradation by chlorine. The polysulfones membranes have a smoother surface less prone to these depositions. Their resistance to chlorine makes them more viable for water desalination applications. The polysulfones were post modified to introduce charges to make them more suitable for water desalination purposes. The charges repelled the ions of same polarity and made the polymer more hydrophilic. However, as the number of charges increased, the water uptake of the polymer increased which resulted in a decrease in the effectiveness of salt /ion rejection. To increase the charge density of the polymers by (the effectiveness of ion rejection), the polymer chains were crosslinked at the ends. For deleniating the structure property relationships, the amount of charges were varied and two sets of chain lengths were studied. The salt permeability decreased with increase in fixed charge concentration and decrease in water uptake.
Poly(2-Oxazolines), were investigated as potential drug delivery vehicles. Polymeric drug delivery vehicles have been used to control the rate of release of drugs in the body to avoid side effects. Another advantage of polymeric drug delivery systems is making the water insoluble drugs more compatible with the fluids in the body. Currently, polyethylene oxides are being used as drug delivery vehicles. However, these polymers have been known to produce antibodies in some people. In this work, poly(2-oxazolines) which are known to be more compatible with human body than PEOs were prepared using different initiators and end cappers to prepare an elaborate repertoire of controlled molecular weight and controlled functionality oligomers for further modification.
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Síntese e determinação da afinidade eletrônica, potencial de ionização e energia de banda proibida de polímeros eletroluminescentes / Synthesis and determination of the electron affinity, ionization potential and energy of band prohibited of electroluminescent polymersFoschini, Mauricio 26 March 2004 (has links)
Nesta dissertação realizamos a síntese eletroquímica e a caracterização eletroquímica e óptica de polímeros conjugados eletroluminescentes no azul, como o poli(p-fenileno) (PPP) e alguns copolímeros. Filmes de PPP, poli(pirrol) (PPI), poli(3-metiltiofeno) (P3MET) e os copolímeros, copoli(p-fenileno-pirrol) (CPPI) e copoli(p-fenileno-3-metiltiofeno) (CP3MET), foram preparados por voltametria cíciica (VC) e cronoamperometria (CR) em eletrodos de óxido de estanho dopado com índio sobre vidro (ITO) em uma solução não-aquosa de acetonitrila e perclorato de tetrabutilamônio contendo os monômeros a diferentes concentrações. Durante a síntese eletroquímica dos filmes de PPP, PPI, P3MET, CPPI e CP3MET, foi usado CaC12 como agente secante em uma caixa-seca para reduzir a umidade do ar. Um tratamento de secagem permitiu um melhor controle sobre o crescimento dos filmes e a presença de umidade na síntese eletroquímica foi correlacionada as diferentes respostas eletroquímicas dos filmes. Os valores de potencial de ionização (PI) e de afinidade eletrônica (AE) foram calculados através da medida dos potenciais no início das curvas voltamétricas direta e inversa, quando foram obtidos os potenciais de oxidação e redução (Eoxd\' e Ered\'). Os valores de energia de gap eletrônico (EgapE) ara esses filmes foram também obtidos por medidas eletroquímicas. Através dos espectros de absorção no UVVIS, foi possível se calcular a energia de gap óptico (EgapO) para os diferentes filmes poliméricos. / In this work we describe the electrochemical and optical aspects of a series of electrochemically synthesized blue-electroluminescent conjugated polymers. The materials employed here comprised poly(p-phenylene) (PPP), poly(pyrro1e) (PPI), poly(3-methylthiophene) (P3MET), poly(p-pheny1ene-pyrrole) (CPPI) copolymer and poly(p-phenylene3methyIthiophene) (CP3MET) copolymer. The films were electrochemically synthesized and deposited onto indium-tin-oxide covered glass (ITO) electrodes. The latter was carried out using either cyclic voltammetry (VC) or cronoamperometry (CR) in a acetonitrile nonaqueous medium containing tetrabutilammonium perclorate and different concentration of the respective monomers. As a further film quality control, the synthesis was carried out within a glove box containing a CaCI2 salt, which acted as drying agent. The latter procedure allowed us to correlate the amount of moisture present within the glove box with the electrochemical properties of the films. The ionization potential (PI) and the electronic affinity (AE) were calculated using the oxidation and reduction on-set potentials of the films (Eoxd\' e Ered\'). The electronic gap (EgapE)d the optical gap energies were calculated using electrochemical and UV-VIS. spectroscopy respectively.
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Eletro-síntese de novos poli(p-fenileno-vinileno)s e estudo de sua aplicação potencial em dispositivos opto-eletrônicos e narizes eletrônicos / Electro-synthesis of new poly (p-phenylene-vinylene) to study its potential application in opto-electronic devices and electronic nosesYoshikawa, Eduardo Kunio Chinone 13 August 2004 (has links)
A presente tese de doutorado deu início a uma nova linha de pesquisa no grupo de Síntese de Polímeros Condutores do IQ-USP, que consiste nos estudos relacionados a sensores de gases para equipamentos do tipo narizes eletrônicos, confeccionados com polímeros condutores. Para isso, foram sintetizados eletroquimicamente sete polímeros da família dos poli(p-fenileno vinileno)s, dos quais cinco inéditos, substituídos por grupos receptores e doadores de elétrons.Todos os polímeros, incluindo seus precursores, foram caracterizados espectroscopicamente (RMN de 1H, IV e UV-Vis). Estudos de análises térmicas (TG e DSC) e de cromatografia por exclusão de tamanho (SEC) foram realizados com os polímeros que possuíam grupos alifáticos de cadeias longas, tendo sido um desses polímeros usado na confecção de dispositivos metal/polímero/metal, cujas medidas de corrente vs. tensão permitiram determinar a mobilidade dos portadores de carga. Sensores de gases foram feitos com os polímeros sintetizados, mostrando boa seletividade quando testados com vapores de uma série de solventes orgânicos polares e apolares. / In this thesis we describe the electrosynthesis of seven difterent poly(p-phenilenevinylene)s, PPVs, bearing long and short, electron donating and withdrawing side groups. These polymers are aimed for our recent interest in gas sensors based on conducting polymers and their application in electronic noses. Five out of the seven polymers are novel materials, hence never described before. The polymers were characterized spectroscopically. Those with long side chain were also submitted to thermal analyses and size exclusion chromatography. Electrical measurements (I x V) in metal/polymer/metal sandwich devices led to the determination of the charge carrier mobility of one of the polymers. Gas sensors, having thin films of the synthesized polymers as active layers, have shown good selectivity towards several organic solvent vapors and water as well.
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Estudo teórico da forma de linha de absorção do poli(p-fenileno vinileno)Silva, Marcelo Castanheira da 05 November 2013 (has links)
Fundação de Amparo a Pesquisa do Estado de Minas Gerais / In this work we made a theoretical study of absorption line-shape of poly (pphenylene
vinylene) (PPV). The model was applied in films processed by techniques:
spin-coating (SC), layer-by-layer (LbL), and Langmuir-Blodgett (LB). The probability
of electronic transitions was calculated based on the molecular model of excitons,
Franck-Condon states, Gaussian distribution of non-entangled chains with conjugate
degree n, semi-empirical parameterization of energy gap, electric dipole moment, and
electron-vibrational mode coupling. Based on the approach of the energy gap functional
dependence 1/n, the inclusion of the non-homogeneity energy dispersion 1/n2 is
essential to obtain good experimental data agreement, mainly, where the absorption
spectra display peaks width of about 65 meV. For unresolved absorption spectra, such
as those observed for a large number of conjugated polymers processed via spin-coating
technique, for example, the non-homogeneity energy dispersion parameterization is not
significant. We develop a model to describe the possible chemical reactions of
conversion of poly(xylyliden tetrahydrothiophenium chloride) (PTHT) monomers to
PPV monomers and PPV monomers in others monomers of different degrees of
conjugation. The dependence 1/n of the functional energy gap was compared with
experimental data oligomers and calculations optimized geometry by Density
Functional Theory (DFT). Effects of exciton confinement were considered in the
transition dipole moment functional. Simulations to calculate the oscillator strength of
the absorption spectra in PPV oligomers indicate that the HOMO-LUMO state prevails
over other excited states. Results obtained from the use of the distribution of the random
walk are as good as those achieved by the use of Gaussian distribution of conjugated
segments in simulations of absorption spectra of the PPV. The use of transition dipole
moment functional, which includes the effect of exciton confinement together with the
distribution of the random walk provide good results in adjustments theoretical
absorption spectra of PPV with more consistent physical parameters. / Nesse trabalho fizemos um estudo teórico da forma de linha de absorção do
poli(p-fenileno vinileno) (PPV). O modelo foi aplicado em filmes processados pelas
técnicas: spin-coating (SC), layer-by-layer (LbL) e Langmuir-Blodgett (LB). A
probabilidade de transição eletrônica foi calculada com base no modelo do exciton
molecular, estados de Franck-Condon, distribuição Gaussiana de cadeias não
emaranhadas com grau de conjugação n, parametrização semi-empírica do gap de
energia, do momento de dipolo elétrico e do acoplamento eletrônico vibracional.
Baseamos na aproximação do funcional do gap de energia de dependência 1/n, a
inclusão da dispersão de energia não homogênea 1/n2, que é essencial para se obter uma
boa concordância com os dados experimentais, principalmente em casos, onde o
espectro de absorção apresenta picos com largura de aproximadamente 65 meV. Em
espectros de filmes pouco definidos, tais como os processados pela técnica spin-coating,
a dispersão de energia não homogênea não é significativa. Desenvolvemos um modelo
para descrever as possíveis reações químicas de conversão de monômeros de poli-
(cloreto de xilideno tetrahidrotiofeno) (PTHT) em PPV e de monômeros de PPV em
outros de diferentes graus de conjugação. A dependência 1/n do funcional do gap de
energia foi comparada com dados experimentais de oligômeros de PPV e cálculos
otimizados da geometria pela Teoria do Funcional da Densidade (DFT). Efeitos de
confinamento de exciton foram considerados no funcional do momento de dipolo de
transição eletrônica. Simulações feitas para calcular a força de oscilador no espectro de
absorção em oligômeros de PPV indicam que o estado HOMO-LUMO prevalece sobre
outros estados excitados. Resultados obtidos pelo uso da distribuição do passeio
aleatório são tão bons quanto aos realizados pelo uso da distribuição Gaussiana de
segmentos conjugados em simulações de espectros de absorção do PPV. O uso do
funcional do momento de dipolo de transição, que inclui efeito de confinamento de
excitons, junto com a distribuição do passeio aleatório propiciam bons resultados nos
ajustes teóricos de espectros de absorção do PPV com parâmetros físicos mais
consistentes. / Doutor em Física
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Síntese e determinação da afinidade eletrônica, potencial de ionização e energia de banda proibida de polímeros eletroluminescentes / Synthesis and determination of the electron affinity, ionization potential and energy of band prohibited of electroluminescent polymersMauricio Foschini 26 March 2004 (has links)
Nesta dissertação realizamos a síntese eletroquímica e a caracterização eletroquímica e óptica de polímeros conjugados eletroluminescentes no azul, como o poli(p-fenileno) (PPP) e alguns copolímeros. Filmes de PPP, poli(pirrol) (PPI), poli(3-metiltiofeno) (P3MET) e os copolímeros, copoli(p-fenileno-pirrol) (CPPI) e copoli(p-fenileno-3-metiltiofeno) (CP3MET), foram preparados por voltametria cíciica (VC) e cronoamperometria (CR) em eletrodos de óxido de estanho dopado com índio sobre vidro (ITO) em uma solução não-aquosa de acetonitrila e perclorato de tetrabutilamônio contendo os monômeros a diferentes concentrações. Durante a síntese eletroquímica dos filmes de PPP, PPI, P3MET, CPPI e CP3MET, foi usado CaC12 como agente secante em uma caixa-seca para reduzir a umidade do ar. Um tratamento de secagem permitiu um melhor controle sobre o crescimento dos filmes e a presença de umidade na síntese eletroquímica foi correlacionada as diferentes respostas eletroquímicas dos filmes. Os valores de potencial de ionização (PI) e de afinidade eletrônica (AE) foram calculados através da medida dos potenciais no início das curvas voltamétricas direta e inversa, quando foram obtidos os potenciais de oxidação e redução (Eoxd\' e Ered\'). Os valores de energia de gap eletrônico (EgapE) ara esses filmes foram também obtidos por medidas eletroquímicas. Através dos espectros de absorção no UVVIS, foi possível se calcular a energia de gap óptico (EgapO) para os diferentes filmes poliméricos. / In this work we describe the electrochemical and optical aspects of a series of electrochemically synthesized blue-electroluminescent conjugated polymers. The materials employed here comprised poly(p-phenylene) (PPP), poly(pyrro1e) (PPI), poly(3-methylthiophene) (P3MET), poly(p-pheny1ene-pyrrole) (CPPI) copolymer and poly(p-phenylene3methyIthiophene) (CP3MET) copolymer. The films were electrochemically synthesized and deposited onto indium-tin-oxide covered glass (ITO) electrodes. The latter was carried out using either cyclic voltammetry (VC) or cronoamperometry (CR) in a acetonitrile nonaqueous medium containing tetrabutilammonium perclorate and different concentration of the respective monomers. As a further film quality control, the synthesis was carried out within a glove box containing a CaCI2 salt, which acted as drying agent. The latter procedure allowed us to correlate the amount of moisture present within the glove box with the electrochemical properties of the films. The ionization potential (PI) and the electronic affinity (AE) were calculated using the oxidation and reduction on-set potentials of the films (Eoxd\' e Ered\'). The electronic gap (EgapE)d the optical gap energies were calculated using electrochemical and UV-VIS. spectroscopy respectively.
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Eletro-síntese de novos poli(p-fenileno-vinileno)s e estudo de sua aplicação potencial em dispositivos opto-eletrônicos e narizes eletrônicos / Electro-synthesis of new poly (p-phenylene-vinylene) to study its potential application in opto-electronic devices and electronic nosesEduardo Kunio Chinone Yoshikawa 13 August 2004 (has links)
A presente tese de doutorado deu início a uma nova linha de pesquisa no grupo de Síntese de Polímeros Condutores do IQ-USP, que consiste nos estudos relacionados a sensores de gases para equipamentos do tipo narizes eletrônicos, confeccionados com polímeros condutores. Para isso, foram sintetizados eletroquimicamente sete polímeros da família dos poli(p-fenileno vinileno)s, dos quais cinco inéditos, substituídos por grupos receptores e doadores de elétrons.Todos os polímeros, incluindo seus precursores, foram caracterizados espectroscopicamente (RMN de 1H, IV e UV-Vis). Estudos de análises térmicas (TG e DSC) e de cromatografia por exclusão de tamanho (SEC) foram realizados com os polímeros que possuíam grupos alifáticos de cadeias longas, tendo sido um desses polímeros usado na confecção de dispositivos metal/polímero/metal, cujas medidas de corrente vs. tensão permitiram determinar a mobilidade dos portadores de carga. Sensores de gases foram feitos com os polímeros sintetizados, mostrando boa seletividade quando testados com vapores de uma série de solventes orgânicos polares e apolares. / In this thesis we describe the electrosynthesis of seven difterent poly(p-phenilenevinylene)s, PPVs, bearing long and short, electron donating and withdrawing side groups. These polymers are aimed for our recent interest in gas sensors based on conducting polymers and their application in electronic noses. Five out of the seven polymers are novel materials, hence never described before. The polymers were characterized spectroscopically. Those with long side chain were also submitted to thermal analyses and size exclusion chromatography. Electrical measurements (I x V) in metal/polymer/metal sandwich devices led to the determination of the charge carrier mobility of one of the polymers. Gas sensors, having thin films of the synthesized polymers as active layers, have shown good selectivity towards several organic solvent vapors and water as well.
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Étude par ARPES et STS des propriétés éléctroniques de réseaux métalliques et organiques nanostructurés / Electronic properties of nanostructured metallic and organic interfaces studied by ARPES and STSVasseur, Guillaume 13 November 2014 (has links)
Dans ce travail nous démontrons, au travers de deux études, l'intérêt fondamental du couplage des techniques de photoémission résolue en angle (ARPES) et de spectroscopie tunnel (STS) dans l'analyse des propriétés électroniques d'interfaces nanostructurées. Dans la première partie, nous présentons une méthodologie permettant de déduire le potentiel de surface induit par la reconstruction triangulaire d'une monocouche d'Ag/Cu(111). Cette méthode est basée sur la mesure des gaps caractérisant la structure de bande de l'état de Shockley du système aux points de haute symétrie de la zone de Brillouin. L'évaporation d'adatomes de potassium permet d'augmenter le nombre de gaps accessibles en photoémission en décalant les bandes vers les états occupés. Dans un modèle d'électrons presque libres, leur amplitude nous donne accès aux premières composantes de Fourier du potentiel. La reconstruction de ce dernier dans l'espace direct nous permet ensuite de calculer la densité d'états locale que nous comparons aux mesures de conductance STS. La seconde partie est consacrée à l'étude de la croissance et des propriétés électroniques des molécules de 1,4-dibromobenzène (DBB) et 1,4-diiodobenzène (DIB) évaporées sur Cu(110). Leur dépôt à température ambiante sur la surface entraîne la déshalogénation des molécules et la formation de phases organométalliques. A 200°C, le système polymérise pour former des chaînes unidimensionnelles de poly(p-phénylène) parfaitement alignées. Les mesures ARPES révèlent l'existence d'une bande pi unidimensionnelle d'états HOMOs dispersant sous le niveau de Fermi. En STS, nous observons également, pour des petites chaînes, le confinement des états LUMOs dans la partie inoccupée du spectre. Le déconfinement de ces états pour les grandes chaînes conduit à la formation d'une bande continue croisant le niveau de Fermi, conférant au polymère un caractère métallique 1D. Le gap HOMO-LUMO est alors mesuré à 1.15 eV / In this work, through two different studies, we demonstrate the fundamental interest in the coupling of angle resolved photoemission (ARPES) and scanning tunneling spectroscopy (STS) to investigate the electronic properties of nanostructured interfaces. In the first part we present a methodology to determine the surface potential of the triangular reconstructed one monolayer of Ag/Cu(111) interface from ARPES. This method is based on the measurement of the Shockley state band structure’s gaps at the high symmetry points of the Brillouin zone. Deposition of potassium adatoms allows us to shift the surface state towards higher binding energies in order to increase the number of accessible gaps in photoemission. From the magnitude of these gaps we deduce the two first Fourier components of the potential felt by electrons using the nearly free electron model. Then we reconstruct it and calculate the local density of states in order to compare it with the conductance maps probed by STS. In the second part we report the study of the growth and the electronic properties of the two molecules 1,4-dibromobenzene (DBB) and 1,4-diiodobenzene (DIB) evaporated on Cu(110). For room temperature deposition, we first observe their deshalogenation and the formation of an intermediate organometallic phase. Then, above 200°C, the system polymerizes into a long-range ordered array of one dimensional poly(p-phenylene) polymer. ARPES intensity maps allowed us to identify a one dimensional graphene-like strongly dispersive pi-band below the Fermi energy. By STS we also observed LUMOs confined states for small chains over the Fermi level. The loss of confinement for long chains induces the formation of a continuous dispersive band which crosses the Fermi energy, conferring a 1D metallic character to the polymer. The HOMO-LUMO gap is found to be 1.15 eV
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