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Thermal Properties of Particle Brush Materials: Effect of Polymer Graft Architecture on the Glass Transition Temperature in Polymer-Grafted Colloidal Systems

机译:粒子刷材料的热性能:聚合物接枝架构对聚合物接枝胶体系统玻璃化转变温度的影响

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The governing parameters controlling the glass transition temperature of polymer-grafted particle systems are analyzed for the particular case of polystyrene (PS)-grafted silica colloids in the dense grafting limit. At a given degree of polymerization of surface-grafted chains the glass transition temperature is found to increase as compared to linear chain polymers of equivalent degree of polymerization. The difference in the glass transition temperature between polymer-grafted particle systems and their respective linear polymer analogs increases with decreasing degree of polymerization of surface-grafted chains and levels off at similar plateau values for particle brushes of distinct particle core size. The trend toward increased glass transition temperature is interpreted as a consequence of the increased steric hindrance in polymer-grafted particles that counteracts the relaxation of surface-grafted polymer chains. The increase in glass transition temperature is shown to be approximately consistent with the chain conformational regimes that are predicted on the basis of a Daoud-Cotton type scaling model.
机译:控制聚合物接枝颗粒系统的玻璃化转变温度的控制参数被分析为致密接枝极限的聚苯乙烯(PS) - 移植二氧化硅胶体的特定情况。在表面接枝链的给定聚合程度上,与当量聚合程度的线性链聚合物相比,发现玻璃化转变温度增加。聚合物接枝颗粒体系与其各自的线性聚合物类似物之间的玻璃化转变温度的差异随着表面接枝链的聚合程度而增加,并且在不同颗粒芯尺寸的颗粒刷的类似平台值下脱落。增加玻璃化转变温度的趋势被解释为聚合物接枝颗粒中的空间障碍增加的结果,该颗粒抵消了表面接枝的聚合物链的松弛。显示玻璃化转变温度的增加与基于Daoud-棉型缩放模型预测的链构象制度大致一致。

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