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Formation of polysilsesquioxane network by vapor-phase method in the spatially limited system of cross-linked polymer pores

机译:通过蒸汽相法形成多晶硅辛硅氧烷网络在交联聚合物孔隙的空间限制系统中

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This paper presents novel types of polysilsesquioxane (PSQ) epolymer composites formed through polycondensation of ethyltriethoxysilane in the spatially limited system of polymer pores in the presence of acid or base catalysts vapors. In addition, it gives an insight into the architecture of the PSQ network. It is shown that PSQ formed under acidic conditions is mainly composed of long ladder-like structures, whereas small three and four-membered rings are dominating structural units in the base set PSQ. Theoretical calculations extend the common interpretation of the Si-29 NMR spectra according to which signals at ca. -47, -55, and -65 ppm can be simply attributed to T-1, T-2, and T-3 Si atoms, respectively. Moreover, they indicate that T-1 and T-0 Si-29 NMR signals should be easily distinguishable from T-2, and T-3 (and among each other), since T-0 is placed upfield (-31.5 ppm) as compared to the other mentioned Si-29 signals. (c) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了通过在酸或碱催化剂蒸汽存在下在聚合物孔的空间有限系统中乙基三乙氧基硅烷的缩聚形成的新型多晶硅蛋白(PSQ)孔组合物。 此外,它还介绍了PSQ网络的体系结构。 结果表明,在酸性条件下形成的PSQ主要由长梯状的结构组成,而小的三个和四元环在基座组PSQ中主导结构单元。 理论计算延长了根据哪个信号在CA的信号的常见解释。 -47,-55和-65 ppm可以分别归因于T-1,T-2和T-3 Si原子。 此外,它们表明T-1和T-0 Si-29 NMR信号应容易地与T-2和T-3(彼此之间)可区分,因为T-0被放置upfield(-31.5ppm) 与其他SI-29信号相比。 (c)2018年elestvier有限公司保留所有权利。

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