首页> 外文会议>International Conference on Material Science, Environmental Science and Computer Science >Preparation, Cross-linking and Characterization of Novel Benzocyclobutene-Siloxane polymers with Polysiloxane Mainchain and Silylbenzocyclobutene Pendant Groups
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Preparation, Cross-linking and Characterization of Novel Benzocyclobutene-Siloxane polymers with Polysiloxane Mainchain and Silylbenzocyclobutene Pendant Groups

机译:新型苯并环丁烯 - 硅氧烷聚合物的制备,交联和表征用聚硅氧烷头颈和甲硅烷基苯并丁烯丁烯侧链

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A series of BCB-siloxane polymers with benzocyclobutene (BCB) pendant groups and polysiloxane mainchain was prepared by the hydrosilylation reaction between 4-(1,1-di-methyl-1-vinyl) silylbenzocyclobutene (4-DMVSBCB) and poly (methylhydrosiloxane) (PHMS) employing Pt/C as catalyst. Upon heating the BCB-siloxane polymers, the cross-linking occurred via ring-opening of benzocyclobutene as evidenced by on-line FT-IR, ~1H NMR and ~(13)C NMR. TGA examination indicates that the thermal stability was enhanced with increasing the incorporation ratio of BCB. Most importantly, the initial decomposition temperature of crosslinked BCB-siloxane resins is as high as 429°C, showing a superior thermal resistance over most other BCB resins.
机译:通过4-(1,1-二甲基-1-乙烯基)甲硅烷基苯丁烯(4-DMVSBCB)和聚(甲基氢硅氧烷)之间的氢化硅烷化反应制备一系列具有苯并环丁烯(BCB)侧丁烯和聚硅氧烷MAINCHAIN的BCB-硅氧烷MAYSCHAIN (PHM)用Pt / c作为催化剂。加热BCB-硅氧烷聚合物时,通过在线FT-IR,〜1H NMR和〜(13)C NMR的苯并环丁烯的开环发生交联。 TGA检查表明,随着BCB的掺入率的增加,热稳定性增强。最重要的是,交联BCB-硅氧烷树脂的初始分解温度高达429℃,在大多数其他BCB树脂上显示出优异的热阻。

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