386 resultados para PEO


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Este trabalho descreve a utilização do sistema n-heptano / PEO 3350 + metanol na hidrogenação catalítica de olefinas e dienos por complexos de ródio. Nos primeiros estudos na hidrogenação do 1-hexeno sob fluxo, temperatura ambiente e com o complexo [(η5-Cp*)2Rh2(μ2- Cl)3]PF6, observaram-se problemas difusionais de hidrogênio no meio reacional, os quais foram resolvidos com modificações na geometria do reator e difusor de hidrogênio. Sob condição de fluxo otimizada e temperatura ambiente, observou-se um efeito na reatividade das olefinas relacionado ao tamanho da cadeia carbônica, na seguinte ordem: 1-hexeno > 1-octeno >> 1- deceno, o qual pode ser expresso, tomando a reatividade do 1-hexeno como padrão, como (1:0,3:0,03). Todas as reações (23 corridas) foram realizadas utilizando a mesma fase catalítica polar (PEO 3350 + MeOH + complexo de ródio), mostrando que o sistema é muito efetivo para catálise homogênea. Por outro lado, os dienos não foram hidrogenados sob condição de fluxo, requerendo altas pressões de hidrogênio (> 20 bar), tipicamente 40 bar. Sob as condições otimizadas (40 bar de H2 e temperatura ambiente), foi obtida uma FR da ordem de 5000 h-1. Durante os estudos da hidrogenação dos dienos, foi observado um aumento na atividade catalítica ao longo das reciclagens. Também foi verificado que a atividade catalítica aumentava quando a cor da solução passava de laranja para marrom, bege e incolor. Com o objetivo de isolar algum complexo de ródio de alguma dessas etapas (cores), foram realizados experimentos sob condições típicas de pressão de H2 (40 bar) e tempo (2 horas) sem substrato, com e sem PEO. Em ambos os casos, após 7 reciclagens a cor final da solução foi marrom. Assim, o substrato parece ser essencial para a coloração final da solução reacional, a qual é a forma mais ativa do catalisador. Nos experimentos realizados sem PEO foi possível isolar o complexo catiônico de ródio [(η5- Cp*)Rh(MeOH)3](PF6)2, o qual foi caracterizado por IV, 1H-RMN, C, H, N e UV / vis. Esse complexo também foi formado na presença de PEO. (Continua). Considerando os altos valores de FR, alguns testes cinéticos (perfil de consumo de substrato, envenenamento por CS2 e reatividade frente ao benzeno), espalhamento de luz e microscopia eletrônica de transmissão foram realizados a fim de elucidar a natureza física do catalisador como molecular ou coloidal. Todos os testes evidenciaram um processo catalítico molecular.

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This paper deals with the study of optical, structural and biocompatible properties of PEO-like plasma polymerized films resulting from RF excited diethylene glycol dimethyl ether (CH3O(CH2CH2O)(2)CH3 diglyme) glow discharges. The study was carried out using visible-ultraviolet and FTIR spectroscopies and contact angle measurements. FTIR spectra of plasma polymerized diglyme showed a stronger presence of ethylene glycol groups in film structure for lower RF power levels. The contact angle measurements for water revealed an increasing from 30degrees to 62,5degrees when the RF power was varied from 2 to 45 W, indicating the decreasing of the hydrophilic character of diglyme films with the increasing of RF power. This trend is in agreement with FTIR results. The data from visible-ultraviolet reflectance and transmittance spectra revealed alterations on optical properties of plasma polymerized diglyme films. The film's optical gap varied from 3.8 to 3 eV for RF power running from 5 to 45 W.

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In this work we report the effects of incorporation of variable amounts (0.5-25%w/w) of montmorillonite in poly(oxyethylene) based materials in order to decrease the polymer crystallinity. Two different classes of materials were studied: silica-poly(oxyethylene)-montmorillonite hybrids prepared by the sol-gel route and poly(oxyethylene)-montmorillonite nanocomposites prepared by mixing the dry clay or the clay aqueous suspension into the melt poly(oxyethylene). The effects of monternorillonite loading on the poly(oxyethylene) crystallization control and on the nanostructural features were investigated by X-ray powder diffraction, small-angle X-ray scattering and differential scanning calorimetry. Experimental results show that free montmorillonite layers coexist with open aggregates and tactoids in the poly(oxyethylene)-montmorillonite nanocomposites, with different features depending on the filler proportion and preparation route. The intercalation of polymer chains in montmorillonite galleries markedly hinders the crystallization of the poly(oxyethylene) matrix. For hybrids materials the silica phase favors the exfoliation of montmorillonite tactoids, so that samples are predominantly constituted by dispersed platelets. (c) 2006 Elsevier B.V. All rights reserved.

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Natural or synthetic materials may be used to aid tissue repair of fracture or pathologies where there has been a loss of bone mass. Polymeric materials have been widely studied, aiming at their use in orthopaedics and aesthetic plastic surgery. Polymeric biodegradable blends formed from two or more kinds of polymers could present faster degradation rate than homopolymers. The purpose of this work was to compare the biological response of two biomaterials: poly(L-lactic acid)PLLA and poly(L-lactic acid)PLLA/poly(ethylene oxide)PEO blend. Forty four-week-old rats were divided into two groups of 20 animals, of which one group received PLLA and the other PLLA/PEO implants. In each of the animals, one of the biomaterials was implanted in the proximal epiphysis of the right tibia. Each group was divided into subgroups of 5 animals, and sacrificed 2, 4, 8 and 16 weeks after surgery, respectively. Samples were then processed for analysis by light microscopy. Newly formed bone was found around both PLLA and PLLA/PEO implants. PLLA/PEO blends had a porous morphology after immersion in a buffer solution and in vivo implantation. The proportion 50/50 PLLA/PEO blend was adequate to promote this porous morphology, which resulted in gradual bone tissue growth into the implant.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Este artigo pretende discutir as relações entre o projeto ALBRAS/ALUNORTE e o processo de organização sindical dos trabalhadores da construção civil de Barcarena, no momento da construção da fábrica da ALBRAS. Analisam-se as relações de trabalho nos canteiros de obras e discutem-se as idéias de modernidade e de progresso que os trabalhadores expressaram nos momentos de conflito com os empresários da construção civil, com o governo do Pará e com o projeto de desenvolvimento para a região, nas greves ocorridas no setor em 1984 e 1985.

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)

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This research presents the result of the engineering geological mapping in a 1:50.000 scale, in Bairro do Peão region, in Piracaia (SP), represented by means of homogeneous units which are susceptible to superficial dynamic processes. To serve as basis for the elaboration of a Chart of Susceptibility to Processes of Superficial Dynamic, a series of physical samples was collected, considering erosive processes and registers of information of usage and soil occupation. The procedure used for elaborating the geotechnical chart is based on Vedovello (2000), which suggests the physiographic compartimentation of the area through photointerpretation and further geotechnical characterization of the selected samples. The geotechnical characterization of the samples was made by identifying the features and properties of the material and forms of the physical environment determining the geotechnical conditions through geological-geotechnical profile descriptions typical of/ peculiar to each unit defined in the area. Thus, for each unit selected, the susceptibility level was established in very high, high, average and low, as well as the prevalent erosive processes.

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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)

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Fibrous materials have morphological similarities to natural cartilage extracellular matrix and have been considered as candidate for bone tissue engineering scaffolds. In this study, we have evaluated a novel electrospun chitosan mat composed of oriented sub-micron fibers for its tensile property and biocompatibility with chondrocytes (cell attachment, proliferation and viability). Scanning electronic microscope images showed the fibers in the electrospun chitosan mats were indeed aligned and there was a slight cross-linking between the parent fibers. The electrospun mats have significantly higher elastic modulus (2.25 MPa) than the cast films (1.19 MPa). Viability of cells on the electrospun mat was 69% of the cells on tissue-culture polystyrene (TCP control) after three days in culture, which was slightly higher than that on the cast films (63% of the TCP control). Cells on the electrospun mat grew slowly the first week but the growth rate increased after that. By day 10, cell number on the electrospun mat was almost 82% that of TCP control, which was higher than that of cast films (56% of TCP). The electrospun chitosan mats have a higher Young’s modulus (P <0.01) than cast films and provide good chondrocyte biocompatibility. The electrospun chitosan mats, thus, have the potential to be further processed into three-dimensional scaffolds for cartilage tissue repair.

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Electrospinning is used to produce fibers in the nanometer range by stretching a polymeric jet using electric fields of high magnitude. Chitosan is an abundant natural polymer that can be used to obtain biocompatible nanostructured membranes. The objectives of this work were to obtain nanostructured membranes based on blends of chitosan and polyoxyethylene (PEO), and evaluate their thermal and morphological properties, as well as their in vitro biocompatibility by agar diffusion cytotoxicity tests for three different cell lines. A nanostructured fibrous membrane with fiber diameters in the order of 200 nm was obtained, which presented a rough surface and thickness ranging from one to two millimeters. The results of the cytotoxicity tests evidenced that the chitosan/PEO membranes are non-toxic to the cells studied in this work. Further, the electrospinning technique was effective in obtaining nanostructured chitosan/PEO membranes, which showed biocompatibility according to in vitro preliminary tests using the cell lines.

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