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Hybrid Inorganic/Organic Crosslinked Resins Containing Polyhedral Oligomeric Silsesquioxanes

机译:含有多面体低聚倍半硅氧烷的无机/有机杂化交联树脂

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The incorporation of both monofunctional and multifunctional polyhedral oligomeric silsesquioxane (POSS) derivatives into crosslinked resins has been conducted as a route to synthesize hybrid organic/inorganic nanocomposites. The central cores of POSS molecules contain an inorganic cage with (SiO_(1.5))_n stoichiometry where n=8,10 and 12. Each Si atom is capped with one H or R function giving an organic outer shell surrounding the nanometer-sized inorganic inner cage. By including polymerizable functions on the R groups, a hybrid organic/inorganic macromer is obtained which can be copolymerized with organic monomers to create thermoplastic or thermoset systems. We have focused on incorporating POSS derivatives into crosslinking resins of the following types: (1) dicyclopentadiene (2) epoxies (3) vinyl esters (4) styrene-DVB (5) MMA/l,4-butane dimethacrylate (6) phenolics and (7) cyanate esters. One goal has been to determine if molecular dispersion of the POSS macromers has been achieved or if various degrees of aggregation occur during crosslinked resin formation. As network formation proceeds, a kinetic race between POSS molecular incorporation into the network versus phase separation into POSS-rich regions (which then polymerize) occurs. Ultimately, we hope to determine the effects of such microstructural features on properties. Combustion of these hybrids creates a SiO_2-like surface layer that retards flame spread. Dynamic mechanical properties have been studied.
机译:通过将单官能和多功能多面体低聚体二氧化胺(POSS)衍生物掺入交联树脂中作为合成杂化有机/无机纳米复合材料的途径。 POSS分子的中央核心含有(SiO_(1.5))_ n个化学计量的无机笼,其中n = 8,10和12.每个Si原子用一个H或R函数覆盖,所述载体围绕纳米大小的无机壳体内笼。通过在R基团上包括可聚合功能,获得杂化有机/无机大分子体,其可以与有机单体共聚以产生热塑性或热固性系统。我们专注于将POSS衍生物掺入以下类型的交联树脂中:(1)二环戊二烯(2)环氧(3)乙烯基酯(4)苯乙烯-VB(5)MMA / L,4-丁烷二甲基丙烯酸酯(6)酚类和(7)氰酸酯。一项目标是确定是否已经实现了足数的分子分散或在交联树脂形成期间发生各种聚集。随着网络形成所需的,发生在将网络中的动力学掺入与相分离成足够的区域(然后聚合)。最终,我们希望确定这种微观结构特征对性质的影响。这些杂种的燃烧产生了一种类似于延迟火焰的SiO_2状表面层。已经研究了动态的机械性能。

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