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限制在石墨烯纳米通道内的NaCl电解质中离子扩散系数的温度依赖性。

Temperature dependence of ion diffusion coefficients in NaCl electrolyte confined within graphene nanochannels.

作者信息

Kong Jing, Bo Zheng, Yang Huachao, Yang Jinyuan, Shuai Xiaorui, Yan Jianhua, Cen Kefa

机构信息

State Key Laboratory of Clean Energy Utilization, Institute for Thermal Power Engineering, College of Energy Engineering, Zhejiang University, Hangzhou, Zhejiang Province 310027, China.

出版信息

Phys Chem Chem Phys. 2017 Mar 15;19(11):7678-7688. doi: 10.1039/c6cp08752c.

Abstract

The behavior of ion diffusion in nano-confined spaces and its temperature dependence provide important fundamental information about electric double-layer capacitors (EDLCs) employing nano-sized active materials. In this work, the ion diffusion coefficients of NaCl electrolyte confined within neutral and charged graphene nanochannels at different temperatures are investigated using molecular dynamics simulations. The results show that ions confined in neutral nanochannels diffuse faster (along the graphene surfaces) than those in bulk solution, which could be attributed to the relatively smaller concentration in confined spaces and the solvophobic nature of graphene surfaces. In charged nanochannels where the electrostatic interactions between counter-ions and charged channel surfaces govern the motion of ions, the diffusion coefficients are found to be lower than those in the neutral counterparts. The increase of temperature will lead to enhanced vibrant thermal motion of ions. Due to the significant role of ion-surface interactions, ion diffusion coefficients in nano-confined spaces are more stable, that is, insensitive to the temperature variation, than those in bulk solution. The electrical conductivity is further estimated using the Nernst-Einstein equation. The findings of the current work could provide basic data and information for research studies on the thermal effects of graphene-based EDLCs.

摘要

离子在纳米受限空间中的扩散行为及其温度依赖性为采用纳米尺寸活性材料的双电层电容器(EDLC)提供了重要的基础信息。在这项工作中,利用分子动力学模拟研究了不同温度下限制在中性和带电石墨烯纳米通道内的NaCl电解质的离子扩散系数。结果表明,限制在中性纳米通道中的离子(沿石墨烯表面)比在本体溶液中的离子扩散得更快,这可归因于受限空间中相对较小的浓度以及石墨烯表面的疏溶剂性质。在反离子与带电通道表面之间的静电相互作用控制离子运动的带电纳米通道中,发现扩散系数低于中性纳米通道中的扩散系数。温度升高将导致离子的振动热运动增强。由于离子 - 表面相互作用的重要作用,纳米受限空间中的离子扩散系数比本体溶液中的更稳定,即对温度变化不敏感。使用能斯特 - 爱因斯坦方程进一步估算电导率。当前工作的研究结果可为基于石墨烯的EDLC热效应的研究提供基础数据和信息。

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