棕榈酸石墨烯复合相变材料:分子动力学模拟

IF 3.1 2区 化学 Q2 CHEMISTRY, ANALYTICAL
Long Gao, Xinhao Fan, Shengxu Zhang, Deyong Che, Baizhong Sun
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引用次数: 8

摘要

为了研究添加石墨烯对脂肪酸热性能的影响,建立了棕榈酸(PA)/石墨烯复合相变材料(CPCM)的非晶模型。通过分子动力学模拟计算了温度和石墨烯质量分数对均方位移、自扩散系数、径向分布函数、旋转半径、比热容和导热系数k的影响。随着石墨烯质量分数的增加,cpcm的相变温度逐渐降低。石墨烯的加入显著提高了聚苯乙烯的比热容和导热系数。cpcm的比热容和导热系数的优化取决于体系温度和石墨烯的质量分数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Palmitic acid graphene composite phase change materials: A molecular dynamics simulation

To investigate the effect of adding graphene to the thermal properties of fatty acids, an amorphous model of palmitic acid (PA)/graphene composite phase change material (CPCM) was developed. The effects of temperature and mass fraction of graphene on the mean square displacement, self-diffusion coefficient, radial distribution function, radius of gyration, specific heat capacity, and thermal conductivity (k) were calculated by performing molecular dynamics simulations. The phase transition temperature of the CPCMs decreased gradually as the mass fraction of graphene increased. The specific heat capacity and thermal conductivity of PA were significantly enhanced by the addition of graphene. The optimization of the specific heat capacity and thermal conductivity of the CPCMs depended on the system temperature and mass fraction of graphene.

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来源期刊
Thermochimica Acta
Thermochimica Acta 化学-分析化学
CiteScore
6.50
自引率
8.60%
发文量
210
审稿时长
40 days
期刊介绍: Thermochimica Acta publishes original research contributions covering all aspects of thermoanalytical and calorimetric methods and their application to experimental chemistry, physics, biology and engineering. The journal aims to span the whole range from fundamental research to practical application. The journal focuses on the research that advances physical and analytical science of thermal phenomena. Therefore, the manuscripts are expected to provide important insights into the thermal phenomena studied or to propose significant improvements of analytical or computational techniques employed in thermal studies. Manuscripts that report the results of routine thermal measurements are not suitable for publication in Thermochimica Acta. The journal particularly welcomes papers from newly emerging areas as well as from the traditional strength areas: - New and improved instrumentation and methods - Thermal properties and behavior of materials - Kinetics of thermally stimulated processes
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