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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and Characterization of Siloxane Resins Derived from Silphenylene-Siloxane Copolymers Bearing Benzocyclobutene Pendant Groups
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Synthesis and Characterization of Siloxane Resins Derived from Silphenylene-Siloxane Copolymers Bearing Benzocyclobutene Pendant Groups

机译:带有苯环丁烯侧基的硅亚苯基-硅氧烷化合物的硅氧烷树脂的合成与表征

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Two bis(dimethylamimo)silanes with benzocyclobutene (BCB) groups, bis(dimethylamino)methyl(4'-benzocyclobutenyl)silane (2) and bis(dimethylamino)methyl [2'-(4'-benzocyclobutenyl)vinyl]silane (4), were synthesized from different synthetic routes, which were then employed to prepare two novel silphenylene-siloxane copolymers (SiBu and SiViBu) bearing latent reactive BCB groups by polycondensation procedure with 1,4-bis(hydroxydimethylsilyl)benzene. At elevated temperatures these copolymers were readily converted to highly crosslinked films and molding disks with network structures by polymer chain crosslinking, which followed the first-order kinetic reaction model. The final resins of SiBu and SiViBu demonstrated excellent thermal stability with high glass transition temperatures (218 and 256 degrees C) and high temperatures at 5% weight loss (553 and 526 degrees C in N-2, 530 and 508 degrees C in air). After aging at 300 degrees C in air for 100 h, the cured resins showed weight loss lower than 4%. The films of cured SiBu and SiViBu also exhibited relatively low dielectric constants of 2.66 and 2.64, low dissipation factors of 2.23 and 2.12 x 10(-3), low water absorptions (<= 0.28%), and high transparence in the visible region with cutoff wavelengths of 321 and 314 nrn. Moreover, the aged films exhibited good dielectric properties and low water absorptions. (C) 2008 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 46: 7868-7881, 2008
机译:具有苯并环丁烯(BCB)基团的两个双(二甲基氨基)硅烷,双(二甲基氨基)甲基(4'-苯并环丁烯基)硅烷(2)和双(二甲基氨基)甲基[2'-(4'-苯并环丁烯基)乙烯基]硅烷(4)通过不同的合成路线合成了,它们随后被用于通过与1,4-双(羟基二甲基甲硅烷基)苯的缩聚反应来制备两种具有潜在反应性BCB基团的新型硅亚苯基-硅氧烷共聚物(SiBu和SiViBu)。在高温下,这些共聚物很容易通过聚合物链交联转变为具有网络结构的高度交联的薄膜和成型盘,遵循一级动力学反应模型。 SiBu和SiViBu的最终树脂在高玻璃化转变温度(218和256摄氏度)和5%失重的高温下(在N-2中为553和526摄氏度,在空气中为530和508摄氏度)表现出出色的热稳定性。 。在空气中在300摄氏度下老化100小时后,固化的树脂的重量损失低于4%。固化的SiBu和SiViBu薄膜还显示出较低的介电常数2.66和2.64,较低的耗散系数2.23和2.12 x 10(-3),低吸水率(<= 0.28%)和可见光区域的高透明性截止波长为321和314 nrn。此外,老化的膜表现出良好的介电性能和低吸水率。 (C)2008 Wiley Periodicals,Inc. J Polym Sci Part A:Polym Chem 46:7868-7881,2008

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