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基于分子动力学模拟和瞬态测量的聚异戊二烯和聚丁二烯的热导率

Thermal Conductivity of Polyisoprene and Polybutadiene from Molecular Dynamics Simulations and Transient Measurements.

作者信息

Vasilev Aleksandr, Lorenz Tommy, Breitkopf Cornelia

机构信息

Chair of Technical Thermodynamics, Technische Universität Dresden, 01069 Dresden, Germany.

出版信息

Polymers (Basel). 2020 May 9;12(5):1081. doi: 10.3390/polym12051081.

Abstract

The thermal conductivities of untreated polyisoprene and polybutadiene were calculated by molecular dynamics (MD) simulations using a Green-Kubo approach between -10 °C and 50 °C at atmospheric pressure. For comparison, the thermal conductivities of untreated polyisoprene with a molecular weight of 54,000 g/mol and untreated polybutadiene with a molecular weight of 45,000 g/mol were measured by the transient hot wire method in similar conditions. The simulation results of both polymers are in good agreement with the experimental data. We observed that the MD simulations slightly overestimate the thermal conductivity due to the chosen force field description. Details are discussed in the paper.

摘要

采用格林-库博方法,通过分子动力学(MD)模拟计算了在大气压力下-10℃至50℃范围内未处理的聚异戊二烯和聚丁二烯的热导率。作为对比,在类似条件下,采用瞬态热线法测量了分子量为54,000 g/mol的未处理聚异戊二烯和分子量为45,000 g/mol的未处理聚丁二烯的热导率。两种聚合物的模拟结果与实验数据吻合良好。我们观察到,由于所选择的力场描述,MD模拟略微高估了热导率。本文将讨论详细情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1118/7284750/5cfe553f633d/polymers-12-01081-g001.jpg

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