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静电纺丝聚合物纳米纤维中的热传递:分子量和侧基的影响。

Thermal transport in electrospun vinyl polymer nanofibers: effects of molecular weight and side groups.

机构信息

Jiangsu Key Laboratory for Design and Fabrication of Micro-Nano Biomedical Instruments, School of Mechanical Engineering, Southeast University, Nanjing 211189, China.

出版信息

Soft Matter. 2018 Dec 5;14(47):9534-9541. doi: 10.1039/c8sm01696h.

Abstract

Understanding and enhancing thermal transport in polymers is of great importance, and is necessary to enable next-generation flexible electronics, heat exchangers, and energy storage devices. Over the past several decades, significant enhancement of the thermal conductivity of polymeric materials has been achieved, but several key questions related to the effects of molecular structure on thermal transport still remain. By studying a series of electrospun vinyl polymer nanofibers, we investigate the relationship between thermal conductivity and both molecular chain length and side group composition. For polyethylene nanofibers with different molecular weights, the measured thermal conductivity increases monotonically with molecular chain length, as energy transport along molecular chains is more efficient than between chains. The observed trend is also consistent with structural characterization by Raman spectroscopy, which shows enhanced crystallinity as molecular weight increases. Further, by comparing the measured thermal conductivity of vinyl polymer nanofibers with different side groups, we found that phonons travel along polymer chains more effectively when the side groups are either lighter or more symmetric. These experimental results help reveal the underlying correlation between the molecular structure and thermal conductivity of polymer nanofibers, providing valuable insights into the design of polymeric materials with enhanced thermal conductivity.

摘要

理解和增强聚合物中的热传递具有重要意义,这对于实现下一代柔性电子、热交换器和储能设备是必要的。在过去的几十年中,已经实现了聚合物材料热导率的显著增强,但与分子结构对热传递的影响相关的几个关键问题仍然存在。通过研究一系列静电纺丝乙烯基聚合物纳米纤维,我们研究了热导率与分子链长度和侧基组成之间的关系。对于具有不同分子量的聚乙烯纳米纤维,测量的热导率随分子链长度单调增加,因为沿分子链的能量传递比链间更有效。这一观察趋势也与拉曼光谱的结构特征一致,表明随着分子量的增加结晶度增强。此外,通过比较具有不同侧基的乙烯基聚合物纳米纤维的测量热导率,我们发现当侧基更轻或更对称时,声子在聚合物链上的传播更有效。这些实验结果有助于揭示聚合物纳米纤维的分子结构与热导率之间的潜在相关性,为设计具有增强热导率的聚合物材料提供了有价值的见解。

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