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Fabrication of Reactive Poly(Phenyl-Substituted Siloxanes/Silsesquioxanes) with Si‒H and Alkoxy Functional Groups via the Piers–Rubinsztajn Reaction

机译:通过Piers-Rubinsztajn反应用Si-H和烷氧基官能团制备反应性聚(苯基 - 取代的硅氧烷/倍半硅氧烷)

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摘要

Poly(phenyl-substituted siloxanes/silsesquioxanes) are obtained by the Piers–Rubinsztajn (PR) reaction of hydrogen-containing siloxanes (HCS) with diphenyldialkoxysilanes such as diphenyldimethoxysilane and diphenyldiethoxysilane catalyzed by tris(pentafluorophenyl)borane. 29Si nuclear magnetic resonance (NMR) spectroscopy, gel permeation chromatography, and refractive index analysis revealed that apart from phenyl substituents and complex structures such as molecular bridges composed of D2Ph2[(C6H5)2Si(OSi)2], structures also existed in these polymers, having high refractive indexes (above 1.50) and high molecular weights (75.60 KDa·mol−1). As revealed by thermogravimetric analysis, these polymers have high thermal stability as well, with temperature at 5% mass loss (T5%) increasing by 182.5 °C and Rw (residual weight ratio) increasing by 5.17 times from 14.63% to 75.60%, as compared to HCS, exhibiting its potential application as resins for resisting strong heat. Such high-refractive-index and temperature-resistant poly(phenyl-substituted siloxanes/silsesquioxanes) with Si–H and alkoxy functional groups can be used as a good addition-type crosslinking agent with adhesion-promoting properties or a special curing agent that can solidify silicone materials through simultaneous addition and condensation reactions, which has potential application in the light-emitting diode (LED) packaging industry.
机译:聚(苯基 - 取代的硅氧烷/倍半硅氧烷)通过含氢硅氧烷(HCS)的PIER-RUBINSZTAJN(PR)反应与二苯基二甲氧基硅烷等二苯基二甲氧基硅烷和由TRIS(五氟苯基)硼烷催化的二苯基二乙醇硅烷的反应获得。 29SI核磁共振(NMR)光谱,凝胶渗透色谱和折射率分析显示,除了苯基取代基和复合结构之类的诸如由D2PH2 [(C6H5)2SI(OSI)2]的分子桥,在这些聚合物中也存在结构,具有高折射率(高于1.50)和高分子量(75.60kDa·mol-1)。如热重分析所揭示的,这些聚合物也具有高的热稳定性,温度为5%质量损失(T5%),增加182.5℃和RW(残余重量比)增加5.17倍,从14.63%增加到75.60%,如与HCS相比,将其潜在应用作为树脂,以抵抗强热量。具有Si-H和烷氧基官能团的这种高折射率和耐磷酸硅氧烷/倍半硅氧烷)可用作具有粘合性促进性能的良好添加型交联剂或可用于的特殊固化剂通过同时添加和缩合反应固化硅氧烷材料,其在发光二极管(LED)包装行业中具有潜在的应用。

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