论文标题

用少许盐的快速而多才多艺的热渗透流

Fast and Versatile Thermo-osmotic Flows with a Pinch of Salt

论文作者

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

论文摘要

热渗透流 - 通过热梯度在微流体和纳米流体系统中产生的流动 - 可以提供一种收获废热的替代方法。但是,这种使用将需要大量的热渗透流,现在只能预测特殊且昂贵的材料。因此,迫切需要设计负担得起的纳米流体系统,以显示大型热渗透系数。在本文中,我们提出了一个通用模型,用于考虑流体动力滑移的带电纳米流体通道中水解的热渗透模型,以及对热渗透反应的不同溶剂和溶质贡献。通过研究润湿,盐类型和浓度以及表面电荷的效果,我们将此模型应用于广泛的系统。我们表明,可以使用滑动带电的表面产生强烈的热渗透流。我们还预测中间湿润是根据表面电荷和盐浓度从嗜热行为到嗜热行为的过渡。总体而言,这个理论框架开辟了一条途径,用于控制和操纵用普通电荷表面和少许盐的热诱导流动。

Thermo-osmotic flows - flows generated in micro and nanofluidic systems by thermal gradients - could provide an alternative approach to harvest waste heat. However, such use would require massive thermo-osmotic flows, which are up to now only predicted for special and expensive materials. There is thus an urgent need to design affordable nanofluidic systems displaying large thermo-osmotic coefficients. In this paper we propose a general model for thermo-osmosis of aqueous electrolytes in charged nanofluidic channels, taking into account hydrodynamic slip, together with the different solvent and solute contributions to the thermo-osmotic response. We apply this model to a wide range of systems, by studying the effect of wetting, salt type and concentration, and surface charge. We show that intense thermo-osmotic flows can be generated using slipping charged surfaces. We also predict for intermediate wettings a transition from a thermophobic to a thermophilic behavior depending on the surface charge and salt concentration. Overall, this theoretical framework opens an avenue for controlling and manipulating thermally induced flows with common charged surfaces and a pinch of salt.

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