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Titlebook: Silicon Based Polymers; Advances in Synthesi François Ganachaud,Sylvie Boileau,Bruno Boury Conference proceedings 2008 Springer Science+Bus

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发表于 2025-3-21 17:26:46 | 显示全部楼层 |阅读模式
书目名称Silicon Based Polymers
副标题Advances in Synthesi
编辑François Ganachaud,Sylvie Boileau,Bruno Boury
视频video
概述There is an increasing interest in materials based on silicon chemistry that cover several domains : (1) polymer chemistry and physics (2) sol-gel chemistry (3) and a large variety of applications.Dev
图书封面Titlebook: Silicon Based Polymers; Advances in Synthesi François Ganachaud,Sylvie Boileau,Bruno Boury Conference proceedings 2008 Springer Science+Bus
描述.Silicon Based Polymers. presents highlights in advanced research and technological innovations using macromolecular organosilicon compounds and systems, as presented in the 2007 ISPO congress. Silicon-containing materials and polymers are used all over the world and in a variety of industries, domestic products and high technology applications...Among them, silicones are certainly the most well–known, however there are still new properties discovered and preparative processes developed all the time, therefore adding to their potential. Less known, but in preparation for the future, are other silicon containing-polymers which are now close to maturity and in fact some are already available like polysilsesquioxanes and polysilanes...All these silicon based materials can adopt very different structures like chains, dendrimers, hyperbranched and networks, physical and chemical gels. The result is a vast array of materials with applications in various areas such as optics, electronics, ionic electrolytes, liquid crystals, biomaterials, ceramics and concrete, paints and coatings … all needed to face the environmental, energetical and technological issues of today. Some industrial aspect
出版日期Conference proceedings 2008
关键词Compound; Copolymer; Industrial Applications; Macromolecular; Organosilicon; Silicon Chemistry; Sol-Gel Ch
版次1
doihttps://doi.org/10.1007/978-1-4020-8528-4
isbn_softcover978-90-481-7902-2
isbn_ebook978-1-4020-8528-4
copyrightSpringer Science+Business Media B.V. 2008
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New Avenues, New Outcomes: Nanoparticle Catalysis for Polymer Makeovers carried out under mild conditions and led to hybrid polymers in quantitative yields. Detailed characterization studies indicated that the integrity of the polymeric templates was not compromised during the functionalization process. The nanoparticle catalysis was found to be quite effective and hig
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Polysiloxane Based Interpenetrating Polymer Networks: synthesis and Propertiespolydimethylsiloxane (PDMS) network has been combined with a cellulose acetate butyrate (CAB) network in order to improve its mechanical properties. Second, a PDMS network was combined with a fluorinated polymer network. Thanks to a perfect control of the respective rates of formation of each networ
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Simple Strategies to Manipulate Hydrophilic Domains in Siliconescement of hydrophilic domains in a hydrophobic silicone elastomer. A facile method for the preparation of poly(ethylene oxide)(PEO)-modified PDMS elastomers is described. Hydrosilane rich elastomers are fabricated by adding poly(hydromethylsiloxane) to a standard addition cure elastomer formula. Aft
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Aldehyde and Carboxy Functional Polysiloxanestechnical bleach and catalytic amounts of TEMPO. This simple oxidation method is also successfully used for the preparation of the corresponding carboxylic acids . (Fig. 1). The stability, reactivity and chemical properties of new compounds . and . are -investigated.
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Modified Azo-Polysiloxanes for Complex Photo-Sensible Supramolecular Systemsng from a polysiloxane containing chlorobenzyl groups in the side-chain, using a two-step -substitution reaction. In the first step, the polysiloxanes were modified with azo-benzene groups and, in the second one, different systems, as functions of the -envisaged application (nucleobases, donor/accep
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Thermoreversible Crosslinking of Silicones Using Acceptor-Donor Interactionstions between a single donor molecule, i.e. 9H-carbazole-9-ethanol, and a poly(dimethylsiloxane) functionalized on both chain-ends by acceptor groups, i.e. 3,5-dinitrobenzoate, were studied by DSC and UV-Vis analysis. The thermoreversibility of the interactions was likely demonstrated by UV-Vis anal
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Hydrosilylation of Polymethylhydrogenosiloxanes in the Presence of Functional Molecules Such as Aminne polymer in the presence of several functional molecules, such as esters, acids, amines, alcohols or carbamates. The used catalysts are platinum based homogeneous systems. In each case, experimental parameters such as choice of catalyst, catalyst/Si-H functions ratio, temperature have been examine
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