论文标题

离子物种在带电的纳米通道中的热扩散

Thermal diffusion of ionic species in charged nanochannels

论文作者

Chen, Wei Qiang, Sedighi, Majid, Jivkov, Andrey P

论文摘要

在带电的纳米通道中,由于温度梯度(称为热扩散)引起的离子的扩散在几个工程领域(包括能量回收和环境保护)中引起了人们的关注。本文提出了对通过分子动力学(MD)进行的带电硅纳米渠道中氯化钠的热扩散的基本研究。结果揭示了纳米填充和表面电荷对SORET系数的符号和大小的影响。结果表明,Soret系数的符号和大小由界面溶液的结构修饰控制。这些修饰包括由纳米结合和表面电荷引起的离子溶剂化和氢键结构。结果表明,纳米填充和表面电荷都可以使溶液更嗜热。此外,边界层中溶液的热扩散与散装流体中溶液的热扩散有显着不同,这导致了孔隙流体的热扩散率与与散装流体相关的溶液的总体差异。这些发现提供了对纳米孔系统中热扩散的进一步了解。提出的MD模拟方法适用于纳米级空间中更广泛的耦合热和传质问题。

Diffusion of ions due to temperature gradients (known as thermal diffusion) in charged nanochannels is of interest in several engineering fields, including energy recovery and environmental protection. This paper presents a fundamental investigation of the thermal diffusion of sodium chloride in charged silica nanochannels performed by molecular dynamics (MD). The results reveal the effects of nanoconfinement and surface charges on the sign and magnitude of the Soret coefficient. It is shown that the sign and magnitude of the Soret coefficient are controlled by the structural modifications of the interfacial solutions. These modifications include the ionic solvation and hydrogen bond structure induced by the nanoconfinement and surface charges. The results show that both nanoconfinement and surface charges can make the solutions more thermophilic. Furthermore, the thermal diffusion of solutions in boundary layers is significantly different from that of solutions in bulk fluid, contributing to the overall difference between the thermal diffusivity of pore fluid and that associated with bulk fluid. The findings provide further understanding of thermal diffusion in nano-porous systems. The proposed MD simulation methodology is applicable to a wider category of coupled heat and mass transfer problems in nanoscale spaces.

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