Tong Xuan, Yang Ping, Zeng Min, Wang Qiuwang
Key Laboratory of Thermo-Fluid Science and Engineering, Ministry of Education, Xi'an Jiaotong University, Xi'an 710049, Shaanxi, P. R. China.
Langmuir. 2020 Jul 28;36(29):8422-8434. doi: 10.1021/acs.langmuir.0c00811. Epub 2020 Jul 16.
Phase change materials (PCMs) are widely used in thermal management and energy storage systems. Investigations on the thermophysical properties enhancement of organic PCMs by introducing carbon-based frameworks have received much attention in recent years. Studies of the phase transition in nanoconfinement are still in controversy with divergent opinions among researchers. In this article, the phase transition behavior of -eicosane in slit-shaped pores between sheets of graphene is investigated by molecular dynamics simulation. It is found that the graphene interface makes the phase transition temperature of -eicosane increase, under the initial slit widths of 1.5-5.3 nm. Impacted by interaction and size effects, the distribution and orientation of -eicosane molecules are quite different from those of the bulk state. In the confinement of graphene, the molecules turn to a reversible layered distribution parallel to the graphene sheets after solidification. The contact layers are found in all the confined systems, which is harder to melt and easier to solidify compared with the main part of the systems. The melting points of different systems are obtained by analysis of the liquid ratio. Finally, the relationship between the dimensionless phase transition point and slit width is discussed.
相变材料(PCMs)广泛应用于热管理和能量存储系统。近年来,通过引入碳基框架来增强有机相变材料的热物理性质的研究受到了广泛关注。纳米限域中的相变研究仍存在争议,研究人员之间观点不一。在本文中,通过分子动力学模拟研究了石墨烯片层间狭缝形孔隙中 - 二十烷的相变行为。发现在初始狭缝宽度为1.5 - 5.3 nm的情况下,石墨烯界面使 - 二十烷的相变温度升高。受相互作用和尺寸效应的影响, - 二十烷分子的分布和取向与本体状态有很大不同。在石墨烯的限域作用下,分子在凝固后转向与石墨烯片层平行的可逆分层分布。在所有限域体系中都发现了接触层,与体系的主要部分相比,接触层更难熔化且更容易凝固。通过分析液体比例获得了不同体系的熔点。最后,讨论了无量纲相变点与狭缝宽度之间的关系。