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Electric Field Effects on Miscibility of Polymer Blends

机译:电场对聚合物混合物混溶性的影响

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Polymeric blends exhibit limited miscibility because their macromolecular size minimizes the entropy gain on mixing. As such, the phase behavior of polymeric mixtures is extremely sensitive to enthalpic interactions and external perturbations. Methods by which the miscibility of polymeric blends could be tuned or controlled, without changing the underlying chemistry, have great practical benefits for the processing of such blends. One such possible method is the application of electric fields. Although electric fields are extensively used to orient polymer domains in blends and block copolymers, how electric fields alter the underlying miscibility of the system is poorly understood. Available theoretical calculations use thermodynamic arguments for adding an electrostatic free energy term to the total free energy of mixing and predict changes in the phase separation temperature Ts due to external electric fields that are much smaller than what most experimental results report. To date, neither theory or experiments have found a clear consensus on whether uniform electric fields enhance mixing or demixing. As only a few experimental results have been published over the past several decades with typically only small shifts in Ts, more experiments with unambiguously large shifts in Ts are needed to better understand this effect. Using a fluorescence technique we have developed for measuring the phase separation temperature Ts of polystyrene (PS) / poly(vinyl methyl ether) (PVME) blends, we investigate the change in Ts due to the presence of electric fields. We show that electric fields strongly enhance mixing in PS/PVME polymer blends. For example, for a 50/50 PS/PVME blend composition, Ts is increased by over 13 K for electric fields of 17 kV/mm.
机译:聚合物共混物表现出有限的混溶性,因为它们的大分子大小使混合的熵增益最小化。因此,聚合物混合物的相行为对焓相互作用和外部扰动非常敏感。通过在不改变下面化学的情况下可以调谐或控制聚合物共混物的混溶性的方法,对这种混合物的加工具有很大的实际益处。一种这种可能的方法是电场的应用。尽管电场广泛地用于在共混物和嵌段共聚物中定向聚合物结构域,但电场如何改变系统的潜在混溶性差不多。可用的理论计算使用热力学争论,用于将静电能量术语添加到混合的总自由能量,并预测相分离温度Ts的变化,由于外部电场远小于大多数实验结果报告。迄今为止,任何理论或实验都没有发现关于均匀电场是否增强混合或解剖的明确共识。由于在过去几十年中仅发布了一些实验结果,通常只有TS中的小变化,需要在TS中明确大的转变进行更多的实验,以更好地理解这种效果。使用荧光技术,我们开发用于测量聚苯乙烯(PS)/聚(乙烯基甲基醚)(PVME)共混物的相分离温度Ts,我们研究了由于电场存在的TS的变化。我们表明电场强烈增强了PS / PVME聚合物共混物中的混合。例如,对于50/50ps / pvme混合物组合物,对于17kV / mm的电场,TS增加超过13 k。

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