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侧链液晶环氧聚合物的热导率:介晶结构的影响。

Thermal Conductivity in Side-Chain Liquid-Crystal Epoxy Polymers: Influence of Mesogen Structure.

作者信息

Trinh Thi En, Ku Kyosun, Yeo Hyeonuk

机构信息

Department of Science Education, Kyungpook National University, 80, Daehak-ro, Buk-gu, Daegu, 41566, Republic of Korea.

Advanced Institute of Water Industry, Kyungpook National University, 80, Daehak-ro, Buk-gu, Daegu, 41566, Republic of Korea.

出版信息

Macromol Rapid Commun. 2025 Apr;46(6):e2400762. doi: 10.1002/marc.202400762. Epub 2024 Dec 8.

Abstract

Side-chain liquid-crystal epoxy polymers (SCLCEPs) are valued for their unique properties, which combine LC side chains with epoxide-based polyether main chains for ordered molecular arrangements. They have high thermal conductivity and optical properties due to their low polydispersity and high crystallinity. Achieving optimal thermal conductivity in SCLCEPs involves addressing factors such as mesogen nature, polymer design, and alignment within the polymer structure. Balancing these factors enhances their suitability for heat dissipation in advanced materials. In this study, SCLCEPs with a polyethylene glycol backbone and laterally arranged mesogens are synthesized via anionic ring opening of mesogenic epoxides with unique LC phases. These monomers, which feature biphenyl mesogens attached to glycidyloxy ether and different alkyl chain lengths on the other side, is designed to facilitate mesogen self-assembly and interaction. The resulting polymers exhibited higher crystallinity and LC phases than the monomers. Notably, because of their LC nature, their thermal conductivity exceeds 0.48 W·m K and increases with shortened alkyl chain lengths, reaching 0.57 W·m K. This research expands the applications of SCLCEPs in advanced fields requiring enhanced thermal properties.

摘要

侧链液晶环氧聚合物(SCLCEPs)因其独特性能而备受重视,这些性能将液晶侧链与基于环氧化物的聚醚主链相结合,实现有序的分子排列。由于其低多分散性和高结晶度,它们具有高导热性和光学性能。在SCLCEPs中实现最佳导热性涉及解决诸如介晶性质、聚合物设计以及聚合物结构内的排列等因素。平衡这些因素可提高它们在先进材料中用于散热的适用性。在本研究中,通过具有独特液晶相的介晶环氧化物的阴离子开环反应,合成了具有聚乙二醇主链和侧向排列介晶的SCLCEPs。这些单体的特征是在一侧连接有联苯介晶的缩水甘油醚,另一侧具有不同的烷基链长度,旨在促进介晶的自组装和相互作用。所得聚合物表现出比单体更高的结晶度和液晶相。值得注意的是,由于其液晶性质,它们的导热率超过0.48W·mK,并随着烷基链长度的缩短而增加,达到0.57W·mK。这项研究扩展了SCLCEPs在需要增强热性能的先进领域中的应用。

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