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首页> 外文期刊>Journal of Materials Science >Role of precursor chemistry on synthesis of Si-O-C and Si-O-C-N ceramics by polymer pyrolysis
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Role of precursor chemistry on synthesis of Si-O-C and Si-O-C-N ceramics by polymer pyrolysis

机译:前驱体化学在聚合物热解合成Si-O-C和Si-O-C-N陶瓷中的作用

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摘要

In this study, the role played by polymer precursor chemistry on the nature of the pyrolyzed product was examined. Variables examined included extent of conjugation of the precursor, differences between a homopolymer and co-polymer, linear and cyclic structures, siloxanes and silazanes and between vinyl and phenyl containing silanes. Results indicate increasing the vinyl content of the precursor increases the amount of free carbon in the pyrolyzed product. The introduction of an aryl group in the silane decreased yield and lastly there was no change in the yield when a silazane was used instead of a silane, however, the composition of the silazane precursor ceramic is rich in nitrogen while a silane precursor ceramic is rich in carbon.
机译:在这项研究中,研究了聚合物前体化学性质对热解产物性质的影响。检查的变量包括前体的共轭程度,均聚物和共聚物之间的差异,线性和环状结构,硅氧烷和硅氮烷以及乙烯基和苯基硅烷之间的差异。结果表明,增加前体的乙烯基含量会增加热解产物中的游离碳量。在硅烷中引入芳基会降低产率,最后,当使用硅氮烷代替硅烷时,产率没有变化,但是,硅氮烷前体陶瓷的组成富含氮,而硅烷前体陶瓷却富含氮。在碳中。

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