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静电纺聚乙烯纳米纤维的导热系数。

Thermal conductivity of electrospun polyethylene nanofibers.

机构信息

Department of Mechanical Engineering, Vanderbilt University, Nashville, TN 37235, USA.

出版信息

Nanoscale. 2015 Oct 28;7(40):16899-908. doi: 10.1039/c5nr04995d.

Abstract

We report on the structure-thermal transport property relation of individual polyethylene nanofibers fabricated by electrospinning with different deposition parameters. Measurement results show that the nanofiber thermal conductivity depends on the electric field used in the electrospinning process, with a general trend of higher thermal conductivity for fibers prepared with stronger electric field. Nanofibers produced at a 45 kV electrospinning voltage and a 150 mm needle-collector distance could have a thermal conductivity of up to 9.3 W m(-1) K(-1), over 20 times higher than the typical bulk value. Micro-Raman characterization suggests that the enhanced thermal conductivity is due to the highly oriented polymer chains and enhanced crystallinity in the electrospun nanofibers.

摘要

我们研究了通过静电纺丝以不同沉积参数制备的单个聚乙烯纳米纤维的结构-热传输性质关系。测量结果表明,纳米纤维的热导率取决于静电纺丝过程中使用的电场,具有更强电场制备的纤维具有更高热导率的一般趋势。在 45 kV 的静电纺丝电压和 150 mm 的针-收集器距离下制备的纳米纤维的热导率可达 9.3 W m(-1) K(-1),比典型的块体值高 20 多倍。微拉曼特征表明,增强的热导率是由于静电纺丝纳米纤维中高度取向的聚合物链和增强的结晶度。

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