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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Synthesis and characterization of polybenzoxazine networks nanocomposites containing multifunctional polyhedral oligomeric silsesquioxane (POSS)
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Synthesis and characterization of polybenzoxazine networks nanocomposites containing multifunctional polyhedral oligomeric silsesquioxane (POSS)

机译:含有多功能多面体低聚倍半硅氧烷(POSS)的聚苯并恶嗪网络纳米复合材料的合成与表征

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摘要

A new class of polybenzoxazine/POSS nanocomposites with network structure is prepared by reacting multifunctional benzoxazine POSS (MBZ-POSS)with benzoxazine monomers (Pa and Ba)at various compositional ratios.Octafunctional cubic silsesquioxane (MBZ-POSS)is used as a curing agent,which is synthesized from eight organic benzoxazine tethers through hydrosilylation of vinyl-terminated benzoxazine monomer (VP-a)with octakis(dimethylsiloxy)silsesquioxane (Q_8M_8~H)using a platinum complex catalyst (Pt-dvs).Incorporation of the silsesquioxane core into polybenzoxazine matrix could significantly hinder the mobility of polymer chains and enhance the thermal stability of these hybrid materials.For these nanocomposites,increasing the POSS content in the hybrids is expected to improve its thermal properties with respect to the neat polybenzoxazine.The morphology feature is useful to explain the thermal property changes (T_g and T_d)and AFM images show that the presence of POSS aggregation in larger scales occurs at higher POSS contents.The reason of the heterogeneous phase separation may be from the less compatibility of the inorganic silsesquioxane core with organic benzoxazine species and the homopolymerization of MBZ-POSS.In the course of the formation of the polybenzoxazine/POSS hybrids,POSS particles were separated from the polybenzoxazine rich region,leading to POSS rich domains in the range of 50-1000 nm.
机译:多功能苯并恶嗪POSS(MBZ-POSS)与苯并恶嗪单体(Pa和Ba)以不同的组成比反应制得了一类新型的具有网络结构的聚苯并恶嗪/ POSS纳米复合材料。以八官能立方倍半硅氧烷(MBZ-POSS)作为固化剂。由八种有机苯并恶嗪系链通过使用铂配合物催化剂(Pt-dvs)将乙烯基封端的苯并恶嗪单体(VP-a)与八(二甲基甲硅烷氧基)倍半硅氧烷(Q_8M_8〜H)进行硅氢加成而合成。聚苯并恶嗪基质可以显着阻碍聚合物链的迁移并增强这些杂化材料的热稳定性。对于这些纳米复合材料,增加杂化物中的POSS含量有望改善其相对于纯聚苯并恶嗪的热性能。形态学特征是有用的解释热性质的变化(T_g和T_d),AFM图像表明,LARS中存在POSS聚集在较高的POSS含量下会出现ger垢。异相分离的原因可能是由于无机倍半硅氧烷核与有机苯并恶嗪物种的相容性较低以及MBZ-POSS的均聚。从富含聚苯并恶嗪的区域中分离出POSS颗粒,导致POSS富集区域在50-1000 nm范围内。

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