Song Lijian, Zhang Youchen, Yang Weimin, Tan Jing, Cheng Lisheng
College of Mechanical and Electrical Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
State Key Laboratory of Organic-Inorganic Composites, Beijing University of Chemical Technology, Beijing 100029, China.
Polymers (Basel). 2021 Oct 28;13(21):3732. doi: 10.3390/polym13213732.
Understanding heat transfer across an interface is essential to a variety of applications, including thermal energy storage systems. Recent studies have shown that introducing a self-assembled monolayer (SAM) can decrease thermal resistance between solid and fluid. However, the effects of the molecular structure of SAM on interfacial thermal resistance (ITR) are still unclear. Using the gold-SAM/PEG system as a model, we performed nonequilibrium molecular dynamics simulations to calculate the ITR between the PEG and gold. We found that increasing the SAM angle value from 100° to 150° could decrease ITR from 140.85 × 10 to 113.79 × 10 m K/W owing to penetration of PEG into SAM chains, which promoted thermal transport across the interface. Moreover, a strong dependence of ITR on bond strength was also observed. When the SAM bond strength increased from 2 to 640 kcal⋅mol-1Å-2, ITR first decreased from 106.88 × 10 to 102.69 × 10 m K/W and then increased to 123.02 × 10 m K/W until reaching a steady state. The minimum ITR was obtained when the bond strength of SAM was close to that of PEG melt. The matching vibrational spectra facilitated the thermal transport between SAM chains and PEG. This work provides helpful information regarding the optimized design of SAM to enhance interfacial thermal transport.
理解界面间的热传递对于包括热能存储系统在内的各种应用至关重要。最近的研究表明,引入自组装单分子层(SAM)可以降低固体与流体之间的热阻。然而,SAM的分子结构对界面热阻(ITR)的影响仍不明确。以金-SAM/聚乙二醇(PEG)体系为模型,我们进行了非平衡分子动力学模拟,以计算PEG与金之间的ITR。我们发现,将SAM角值从100°增加到150°,可使ITR从140.85×10降至113.79×10 mK/W,这是由于PEG渗透到SAM链中,促进了界面间的热传递。此外,还观察到ITR对键强有很强的依赖性。当SAM键强从2增加到640 kcal⋅mol-1Å-2时,ITR首先从106.88×10降至102.69×10 mK/W,然后增加到123.02×10 mK/W,直至达到稳态。当SAM的键强接近PEG熔体的键强时,可获得最小ITR。匹配的振动光谱促进了SAM链与PEG之间的热传递。这项工作为优化SAM设计以增强界面热传递提供了有用信息。