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Piers-Rubinsztajn reaction for BCB functionalized silphenylene/silbiphenylene siloxane oligomers to highly crosslinked low-k thermosets
European Polymer Journal ( IF 6 ) Pub Date : 2018-11-01 , DOI: 10.1016/j.eurpolymj.2018.09.015
Shichang Tian , Junyi Li , Zhe Cai , Bingyao Shi , Wenhao Chen , Yuanrong Cheng

Abstract Herein, we have successfully prepared two benzocyclobutene (BCB) functionalized siloxane oligomers (PhBVSi and BPBVSi) by Piers-Rubinsztajn reaction, which provides a facile method for the post-curable silphenylene or silbiphenylene-containing siloxane oligomers. These oligomers can be cured above 200 °C to prepare the highly crosslinked thermosets. Due to the introduction of silphenylene and silbiphenylene units and the highly crosslinked structure from BCB, the thermosets exhibit high initial storage modulus and good thermostability (Td5 > 490 °C in nitrogen). Tan δ curve of the cured PhBVSi and BPBVSi appears peaks with small dissipation factor of 0.05 at 134 °C and 148 °C, respectively, which refers to unconventional glass transition proved by the penetration mode TMA. In addition, both thermosets show well dielectric property with low dielectric constants (

中文翻译:

用于 BCB 功能化的硅苯/硅联苯硅氧烷低聚物的 Piers-Rubinsztajn 反应生成高度交联的低 k 热固性材料

摘要 在此,我们通过 Piers-Rubinsztajn 反应成功制备了两种苯并环丁烯 (BCB) 官能化的硅氧烷低聚物(PhBVSi 和 BPBVSi),为后固化硅苯或含硅联苯的硅氧烷低聚物提供了一种简便的方法。这些低聚物可以在 200 °C 以上固化以制备高度交联的热固性材料。由于引入了亚硅苯和亚硅联苯单元以及 BCB 的高度交联结构,热固性材料表现出高初始储能模量和良好的热稳定性(氮中 Td5 > 490 °C)。固化后的 PhBVSi 和 BPBVSi 的 Tan δ 曲线分别在 134 °C 和 148 °C 出现损耗因子为 0.05 的峰值,这是通过渗透模式 TMA 证明的非常规玻璃化转变。此外,
更新日期:2018-11-01
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