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胺源对“一锅法”合成聚硼硅氮烷结构及性能的影响
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作者 陈楚童 陈艳杰 +2 位作者 罗永明 张宗波 徐彩虹 《高分子学报》 SCIE CAS CSCD 北大核心 2024年第2期161-171,共11页
以六甲基二硅氮烷(MMN)、四甲基二乙烯基二硅氮烷(MMNVi)和四甲基二硅氮烷(MMNH) 3种不同结构的二硅氮烷为胺源,通过与氯硅烷和三氯化硼反应,制备出具有不同封端结构的聚硼硅氮烷.其中,以MMN、MMNVi为胺源可获得液态产物;以MMNH为胺源时... 以六甲基二硅氮烷(MMN)、四甲基二乙烯基二硅氮烷(MMNVi)和四甲基二硅氮烷(MMNH) 3种不同结构的二硅氮烷为胺源,通过与氯硅烷和三氯化硼反应,制备出具有不同封端结构的聚硼硅氮烷.其中,以MMN、MMNVi为胺源可获得液态产物;以MMNH为胺源时,因合成过程中发生活性基团间的过度交联导致产物凝胶.采用核磁共振波谱仪、红外光谱仪对液态前驱体聚合物及其热解产物的结构进行了表征.研究结果表明:通过“一锅法”制备的液态聚硼硅氮烷主链具有较多的支化和环状结构,随着封端结构中乙烯基含量的增加,所得前驱体的固化温度降低,固化反应活化能降低.与以MMN为胺源和封端剂合成的聚硼硅氮烷相比,以MMNVi为胺源所得前驱体固化前后陶瓷产率分别提高了14.9%及8.1%.并且,通过改变胺源的种类和比例可以调节热解产物的元素组成,合成的液态前驱体聚合物热解所得SiBCN陶瓷结晶温度高于1700℃. 展开更多
关键词 前驱体转化法 硅硼碳氮陶瓷 聚硼硅氮烷 “一锅法”
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Rapid Conversion of Perhydropolysilazane into Thin Silica Coating at Low Temperature 被引量:2
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作者 Wen-Yue Wang Yu-Lin zhang +6 位作者 Xiang Guo Li-Ming Wang Jun-Rong zhang Hui Yang Guo-Jun Dong zong-bo zhang Cai-Hong Xu 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2023年第8期1198-1205,I0006,共9页
The conversion of perhydropolysilazane(PHPS)to silica at low temperature is beneficial for its application on thermally vulnerable substrates.In this work,it is demonstrated that(3-aminopropyl)triethoxysilane(APTES)ha... The conversion of perhydropolysilazane(PHPS)to silica at low temperature is beneficial for its application on thermally vulnerable substrates.In this work,it is demonstrated that(3-aminopropyl)triethoxysilane(APTES)has high catalytic efficiency for the low temperature conversion of PHPS and the catalytic mechanism of APTES was suggested.The influence of temperatu re and humidity on the catalytic conversion process was investigated,and it was found that PHPS can be rapidly converted to silica in 10 min at 80℃with relative humidity of 90%.The achieved silica is mainly composed of SiNO_(3)/SiO_(3)OH and SiO_(4)structure with O/Si of 1.74 and N content of 1%.As an approach to prepare inorganic coating,the low-temperature conversion method achieves a silica coating with low volume shrinkage of 0.86%,low roughness of R_(a)=0.293 nm,high nanoindentation hardness of 3.62 GPa and modulus of 30.06 GPa,which exhibits high potentials as protective coating for va rious materials even those vulnerable to high temperature. 展开更多
关键词 Perhydropolysilazane (3-Aminopropyl)triethoxysilane Silica coating Rapid conversion CATALYSIS
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