'High-Entropy Polymers': A New Mixing Route of Suppressed Phase Separation

Yu-Jr Huang, J. Yeh, A. Yang
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Abstract

Alloys and ceramics of multi-component compositions and hence having high entropy at random solution states recently received focused attentions. The present work emulates the “high-entropy” concept by using a common solvent to prepare polymer blends from a number of polymers, which shows interesting unique phenomena and promising properties. By investigating the heterogeneous domain size (Λ) of thin solid films prepared by spin coating, we found that de-mixing, commonly observed in polymer blends, can be suppressed when the number of polymer species (n) in the blend increased. In binary blends (n=2), de-mixing occurred, manifesting a wide spread of Λ strongly influenced by the inter-segmental enthalpy and chain length. However, as n increased, the Λ distribution shrank sharply by a declining upper edge, indicating significant de-mixing suppression. The suppression is attributable to high mixing entropy and a kinetic steric effect blocking like-polymer aggregation during film formation. The de-mixing suppression was found effective in dispersing poly(9,9’-dioctylfluorene), a conjugated polymer (CP), in the optically inert n=5 blend where the CP molecules remained well separated, as shown spectroscopically, for CP fractions up to 50 wt.%, manifesting excellent efficiency performance.
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“高熵聚合物”:抑制相分离的混合新途径
在随机溶液状态下具有高熵的多组分合金和陶瓷近年来受到广泛关注。本研究模拟了“高熵”概念,使用一种常见的溶剂从许多聚合物中制备聚合物共混物,显示出有趣的独特现象和有前途的性能。通过研究自旋镀膜制备的固体薄膜的非均相畴尺寸(Λ),我们发现,当共混物中聚合物种类(n)的数量增加时,可以抑制聚合物共混物中常见的脱混现象。在二元共混体系(n=2)中,出现了脱混现象,表现为Λ分布广泛,受节间焓和链长的强烈影响。但随着n的增大,Λ分布呈上沿下降的趋势急剧缩小,说明脱混抑制作用明显。这种抑制是由于高混合熵和在成膜过程中阻碍类聚合物聚集的动力学立体效应。在光学惰性n=5共混物中,分离抑制对聚(9,9′-二辛基芴)(一种共轭聚合物)的分散有效,其中CP分子保持良好的分离,如光谱所示,CP馏分高达50 wt.%,表现出优异的效率性能。
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