The confinement effect of BNNT nanofillers on the thermal conductivity of PE from molecular simulation

Yuanyang Ren, Ziling Zhou, Jun Zhou, Kai Wu
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Abstract

The key point of improving the thermal conductivity of polymer is to increase the orientation of the chains and reduce the disorder conformation. Recently, the nanoring structures are incorporated into polymers to tune the chain dynamics. In this work, the wide diameter (4~7 nm) but short length (~10 nm) BN nantube as nanoring incorporated into polyethylene. The thermal conductivity of nanocomposite can be increased by about 3 times from the nonequilibrium molecular dynamics calculation. Structurally, the polyethylene chains are aligned along the nanoring. In addition, the confinement of nanoring reduces the mobility of polyethylene chains by 40% and enhances the interatomic and interaction, which results in red shift of low frequency phonons. The results provide valuable guidance for improving the thermal conductivity of polymers by doping nanoring.
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从分子模拟研究了BNNT纳米填料对聚乙烯热导率的约束效应
提高聚合物导热性的关键是提高聚合物链的取向性,减少无序构象。近年来,纳米环结构被引入到聚合物中以调节链动力学。本研究将宽直径(4~7 nm)短长度(~10 nm)的BN纳米管作为纳米环掺入聚乙烯中。通过非平衡分子动力学计算,纳米复合材料的导热系数提高了约3倍。结构上,聚乙烯链沿纳米环排列。此外,纳米环的限制使聚乙烯链的迁移率降低了40%,并增强了原子间和相互作用,导致低频声子的红移。研究结果为纳米环掺杂提高聚合物导热性能提供了有价值的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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