论文标题

表面电荷和热渗透现象之间的复杂耦合

Complex coupling between surface charge and thermo-osmotic phenomena

论文作者

Ouadfel, Mehdi, Féliciano, Michael De San, Herrero, Cecilia, Merabia, Samy, Joly, Laurent

论文摘要

通过热梯度在液化界面上产生的热渗透流可用于在带电表面上的废热中产生电流。控制热渗透电流的两个关键参数是由于液体固定相互作用而引起的表面电荷和界面焓过量。虽然已经表明,从水到焓过量的贡献可能至关重要,但这种贡献如何受到表面电荷的影响。在这里,我们首先讨论热渗透流量和诱导的电流如何与界面焓过量有关。然后,我们使用分子动力学模拟来研究表面电荷对界面焓过量的影响,以进行表面电荷的不同分布以及两个不同的润湿条件。我们观察到表面电荷对焓过量具有很大的影响,并且焓过量对表面电荷的依赖性在很大程度上取决于其分布。相比之下,润湿对电荷触觉耦合的影响很小。我们通过简单的分析模型合理化结果,并探索它们对热渗透现象的后果。总体而言,这项工作为搜索提供最佳废热恢复性能的系统提供了指南。

Thermo-osmotic flows, generated at liquid-solid interfaces by thermal gradients, can be used to produce electric currents from waste heat on charged surfaces. The two key parameters controlling the thermo-osmotic current are the surface charge and the interfacial enthalpy excess due to liquid-solid interactions. While it has been shown that the contribution from water to the enthalpy excess can be crucial, how this contribution is affected by surface charge remained to be understood. Here, we start by discussing how thermo-osmotic flows and induced electric currents are related to the interfacial enthalpy excess. We then use molecular dynamics simulations to investigate the impact of surface charge on the interfacial enthalpy excess, for different distributions of the surface charge, and two different wetting conditions. We observe that surface charge has a strong impact on enthalpy excess, and that the dependence of enthalpy excess on surface charge depends largely on its distribution. In contrast, wetting has a very small impact on the charge-enthalpy coupling. We rationalize the results with simple analytical models, and explore their consequences for thermo-osmotic phenomena. Overall, this work provides guidelines to search for systems providing optimal waste heat recovery performance.

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