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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Epoxy hybrid networks with high mass fraction molecular-level dispersion of pendant polyhedral oligomeric silsesquioxane (POSS)
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Epoxy hybrid networks with high mass fraction molecular-level dispersion of pendant polyhedral oligomeric silsesquioxane (POSS)

机译:具有高质量分数分子水平分散的环氧杂交网络垂侧多面体寡聚蛋白酶蛋白(POSS)

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摘要

A novel high shear continuous reactor method was developed to obtain molecular level incorporation of polyhedral oligomeric silsesquioxane (POSS) containing one amine group and seven isobutyl groups into epoxy network as pendant cage. The method consisted of optimizing reaction time and temperature for the synthesis of POSS-epoxy precursor in a high shear continuous reactor. A full conversion of POSS into POSS-epoxy precursor was achieved within 30-40 s of reaction time in a continuous reactor for all molar compositions from 1:140 to 1:1.05 in comparison to a batch process with the reaction time of 18 h. The structure of this precursor at the end of the reaction, determined by silicon Nuclear Magnetic Resonance spectroscopy (Si-29 NMR), was close to the ideal one. The distribution of reaction product was determined by size exclusion chromatography (SEC). The reaction product containing up to 1:3-mol ratio of POSS: epoxy molecules showed 'epoxy-POSS-epoxy' precursor as a primary product in comparison to 1:2 and 1:1.05-mol ratios with higher molecular weight precursor as the primary product. Hybrid networks containing up to 50 wt % POSS were prepared by curing these precursors with an aromatic amine curative 4, 4' diamino diphenyl methane (DDM). The resulting networks are completely transparent and no phase separation was observed by SEM and TEM in the course of polymerization despite the incompatibility of the isobutyl groups attached to the POSS with the aromatic epoxy-amine networks. In addition to that, DMA and TGA results prove that the introduction of high shear continuous reactor promotes the dispersion of pendant POSS to a molecular level into epoxy networks. (C) 2017 Elsevier Ltd. All rights reserved.
机译:开发了一种新型的高剪切连续反应器方法,以获得含有一个胺基和七个异丁基的多面体低聚体蛋白(POSS)的分子水平掺入作为环氧网络作为侧笼。该方法包括优化在高剪切连续反应器中合成足够环氧前体的反应时间和温度。在与批量处理中,在连续反应器中,在连续反应器中的30-40秒溶液中,在与批量处理中的反应时间为18小时的批量处理,在30-40秒的反应时间内进行全面转化为POSS-环氧的前体。通过硅核磁共振光谱法(Si-29 NMR)确定的反应结束时该前体的结构靠近理想的。通过尺寸排阻色谱法(SEC)测定反应产物的分布。含有高达1:3-摩尔比的反应产物:环氧分子与初级产物显示为1:2和1:1.05mol比与较高分子量前体的初级产物显示出“环氧树脂 - 足数 - 环氧树脂”前体。主要产品。通过用芳族胺固化4,4'氨基甲基二苯基甲烷(DDM)固化这些前体,制备含有高达50wt%的杂化网络。所得到的网络是完全透明的,并且在聚合过程中,除了用芳族环氧树脂网络中附着的异丁基的不相容,聚合过程中的SEM和TEM没有观察到相分离。除此之外,DMA和TGA结果还证明了高剪切连续反应器的引入促进了吊坠足以将分子水平分散到环氧网络中的分散体。 (c)2017 Elsevier Ltd.保留所有权利。

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