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Design of phosphorene/graphene heterojunctions for high and tunable interfacial thermal conductance

机译:phosphorene /石墨烯垂直的设计高和可调界面热导率

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Using density functional theory calculations and molecular dynamics simulations, we systematically explore various possible atomic structures of phosphorene/graphene in-plane heterojunctions and their effects on interfacial thermal conductance (ITC). Unlike the remarkable orientation-dependence of thermal conductivity in pure phosphorene, the ITC is much less orientation-dependent. In addition, the ITC is found to be high, comparable to those of graphene-MoS2 in-plane heterojunctions and chemically-bonded graphene-metal heterojunctions. Moreover, the ITC of armchair heterojunctions abnormally increases with tensile strain, while the zigzag heterojunctions simply follow the normal trend. To gain an in-depth understanding of these interesting observations, we further analyze the atomic topology and phonon vibrational spectrum and examine the nonlinear interfacial coupling in the heat transport, ITC anisotropy, and temperature effect on the ITC. Our findings suggest that phonon anharmonicity plays a critical role in the thermal transport behavior of two-dimensional in-plane heterojunctions.
机译:使用密度泛函理论计算和分子动力学模拟,我们系统探索各种可能的原子结构phosphorene /石墨烯平面垂直对界面热导率的影响(ITC)。orientation-dependence热导率纯phosphorene, ITC是非常少的orientation-dependent。发现高,可比的graphene-MoS2平面垂直,化学结合graphene-metal垂直。此外,ITC纸上谈兵的垂直与拉伸应变异常增加,而锯齿形垂直简单地遵循正常的趋势。这些有趣的观察,我们进一步分析原子拓扑和声子振动光谱并检查的非线性界面耦合的热传输,ITC各向异性,对美国国际贸易委员会和温度的影响。我们的研究结果表明,声子非简谐振动在热传递中起着至关重要的作用二维平面的行为垂直。

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