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Two regimes of thermal resistance at a liquid-solid interface

机译:液固界面的两种热阻状态

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Using nonequilibrium molecular dynamics simulations in which a temperature graident is imposed, we determined the thermal resistance of a model liquid-solid interface. Our simulations reveal that the strength of the bonding between liquid and solid atoms plays a key role in determining interfacial thermal resistance. Moreover, we find that the functioanl dependence of the thermal resistance on the strength of the liquid-solid interactions exhibits two distinct regimes: (i) exponential dependence for weak bonding (nonwetting liquid) and (ii) power law dependence for strong bonding (wetting liquid). The identification of the two regimes of the Kapitza resistance has profound implications for understanding and designing the thermal properties of nanocomposite materials.
机译:使用其中施加温度梯度的非平衡分子动力学模拟,我们确定了模型液-固界面的热阻。我们的模拟表明,液体和固体原子之间的键合强度在确定界面热阻方面起着关键作用。此外,我们发现,热阻对液-固相互作用强度的函数依赖性表现出两个不同的状态:(i)弱结合(不润湿液体)的指数依赖性和(ii)强结合(润湿性)幂律的依赖性液体)。 Kapitza电阻的两种状态的识别对于理解和设计纳米复合材料的热性能具有深远的意义。

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