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引用次数: 9

摘要

1. 近年来,基于4族饱和线性骨架的无机聚合物如聚硅烷、聚日耳曼等的化学研究日益受到关注。其中,聚合有机硅化合物,即在其主链上具有正链化的聚硅烷,由于其商业功能用途而被广泛研究[1 - 8],例如(1)β-SiC纤维的前驱体,用于增强陶瓷的多功能浸渍剂[9,10];(2)碳-碳复合材料防护涂层[11]和耐原子氧涂层[12]等;(3)自由基光引发剂[4];(4)光电导体[13,14]和非线性光学材料[15,16];(5)导电和半导体bb0电子器件的生产。这些应用与它们不同的化学和σ-共轭电子行为有关,因为与大多数其他无机和有机材料相比,σ-电子具有不同寻常的迁移率。
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A Review of Electrosynthesis of Polysilane
1. INTRODUCTION In recent years, increasing research interest has been focused on the chemistry of inorganic polymers such as polysilanes, polygermanes, and the like based on the saturated linear skeletons of group 4 atoms. Among these, polymeric organosilicon compounds, namely, polysilanes having the catenation in its backbone, are studied [1–8] extensively because of their commercial functional uses, such as (1) a precursor for β-SiC fiber, a versatile impregnating agent [9, 10] for strengthening ceramics; (2) protective coatings [11] for carbon-carbon composites and coatings resistant to atomic oxygen [12] and the like; (3) radical photoinitiators [4]; (4) photoconductors [13, 14] for electrophotography and nonlinear optical materials [15, 16]; and (5) production of conducting and semiconducting [17] electronic devices. These applications are associated with their different chemical and σ-conjugated electronic behavior due to the unusual mobility of σ-electrons compared to most other inorganic and orga...
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