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Control of Molecular Weight,Stereochemistry and Higher Order Structure of Siloxane-containing Polymers and Their Functional Design

机译:含硅氧烷聚合物的分子量,立体化学和高阶结构的控制及其功能设计

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摘要

We describe the precision synthesis schemes of siloxane-containing polymers,i.e.,the control of their molecular weight,stereoregularity,and higher-order structures.First,we found a new catalytic dehydrocoupling reaction of water with bis(dimethylsilyl)benzene to give poly(phenylene-disiloxane).Together with this reaction,we applied hetero-condensations to the synthesis of thermally stable poly(arylene-siloxane)s.The dehydrocoupling reaction was applied to the synthesis of syndiotactic poly(methylphenylsiloxane)and poly(silsesquioxane)s,which we also prepared by hydrolysis and deaminative condensation reactions.We discuss the tendency for loop formation to occur in the synthesis of poly(silsesquioxane)by hydrolysis,and provide comments on the design of functionality of the polymers produced.By taking advantage of the low energy barrier to rotation in the silicon-oxygen bond,we designed selective oxygen-permeable membrane materials and liquid crystalline materials.The low surface free energy of siloxane-containing systems allows surface modification of a blend film and the design of holographic grating materials.
机译:我们描述了含硅氧烷聚合物的精确合成方案,即控制其分子量,立体有规性和高阶结构的方法。首先,我们发现了水与双(二甲基甲硅烷基)苯的新型催化脱氢偶联反应可得到聚(结合该反应,我们将杂缩合反应应用于热稳定的聚亚芳基硅氧烷的合成。脱氢偶联反应用于间规聚甲基苯基硅氧烷和聚倍半硅氧烷的合成,我们还讨论了通过水解和脱氨基缩合反应制备的方法。我们讨论了在水解聚(倍半硅氧烷)合成中环形成的趋势,并就所生产聚合物的功能设计提出了意见。硅氧键旋转的能量屏障,我们设计了选择性透氧膜材料和液晶材料。低表面自由能含硅氧烷体系的能量允许对共混膜进行表面改性和全息光栅材料的设计。

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