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首页> 外文期刊>Macromolecules >Vertex Group Effects in Entangled Polystyrene-Polyhedral Oligosilsesquioxane (POSS) Copolymers
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Vertex Group Effects in Entangled Polystyrene-Polyhedral Oligosilsesquioxane (POSS) Copolymers

机译:纠缠的聚苯乙烯-多面体低聚倍半硅氧烷(POSS)共聚物的顶点族效应

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摘要

The linear viscoelastic behavior of thermoplastic hybrid inorganic-organic polymers synthesized through radical copolymerization of styrene and styryl-based polyhedral oligosilsesquioxane (POSS), R-7(Si8O12) (C6H4CH=CH2), with R = isobutyl (Bu-i), cyclopentyl (Cp), and cyclohexyl Cy), was studied to reveal a significant influence of the vertex group, R. The glass transition temperatures were found to feature a strong and complex POSS vertex group dependence, with Bu-i playing a plasticizer-like role and Cp and Cy enhancing the glass transition. Rheological measurements showed that all of the copolymers with lower weight fractions of POSS (0 6, and 15 wt %) followed the time-temperature superposition (ITS) principle. The rubbery plateau modulus (G(N)(0)) was found to decrease with increasing POSS content and showed a strong dependence on vertex group, with the ordering (BuPOSS)-Bu-i > CpPOSS > CyPOSS, indicating increasing entanglement dilution with POSS size. At low deformation frequencies, a terminal zone was observed for the (BuPOSS)-Bu-i-based copolymers, like pure PS; however, CpPOSS and CyPOSS copolymers lead to low-frequency elasticity for higher POSS contents, Suggesting a weak physical network, with a particular CpPOSS copolymer revealing critical gel behavior. We ascribe the observed rheological data to two distinct effects of POSS incorporation: (i) the effect of POSS grafting on microscopic topology of polymer chains and (ii) intermolecular interaction between POSS and PS chain segments. From Vogel -Tanmman-Fulcher plots of the terminal relaxation time, the apparent activation energy values for each copolymer series were found to monotonically increase with POSS content, indicating that POSS decreases rheological temperature sensitivity, consistent with tTS analysis for free volume thermal expansivity.
机译:通过苯乙烯和苯乙烯基多面体低聚倍半硅氧烷(POSS),R-7(Si8O12)(C6H4CH = CH2)的自由基共聚反应合成的热塑性杂化无机-有机聚合物的线性粘弹性行为,R =异丁基(Bu-i),环戊基(Cp)和环己基Cy)被研究以揭示顶点基团R的显着影响。发现玻璃化转变温度具有强烈和复杂的POSS顶点基团依赖性,Bu-i起到类似增塑剂的作用Cp和Cy增强玻璃化转变。流变学测量表明,所有具有较低POSS重量分数(0、6和15 wt%)的共聚物都遵循时间-温度叠加(ITS)原理。发现橡胶态平稳模量(G(N)(0))随着POSS含量的增加而降低,并显示出对顶点组的强烈依赖性,顺序为(BuPOSS)-Bu-i> CpPOSS> CyPOSS,表明缠结稀释度随POSS大小。在低变形频率下,观察到(BuPOSS)-Bu-i基共聚物的末端区域,如纯PS;然而,CpPOSS和CyPOSS共聚物导致较高的POSS含量产生低频弹性,这表明其物理网络较弱,特定的CpPOSS共聚物显示出关键的凝胶行为。我们将观察到的流变学数据归因于POSS掺入的两种不同作用:(i)POSS接枝对聚合物链微观拓扑的影响,以及(ii)POSS和PS链段之间的分子间相互作用。从末端弛豫时间的Vogel -Tanmman-Fulcher曲线图中,发现每个共聚物系列的表观活化能值随POSS含量单调增加,表明POSS降低了流变温度敏感性,与tTS分析的自由体积热膨胀率一致。

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