静电相关性对离子液体中石墨烯电极频率响应的影响。

IF 2.4 3区 物理与天体物理 Q2 PHYSICS, FLUIDS & PLASMAS
Mahdi Yavarian, Roderick Melnik, Z L Mišković
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引用次数: 0

摘要

本文采用双薄层极限下的匹配渐近展开方法,研究了含室温离子液体的石墨烯基电化学系统的频率响应,研究了石墨烯电极与离子液体界面的扩散电荷动力学。渐近匹配框架下的理论主要由(1)长度标度sqrt[λ_{D}L_{c}]支持,它恰当地表征了离子液体中双层的结构,λ_{D}表示德拜长度,L_{c}表示静电相关长度;(2)充电时间τ_{c}=λ_{D}^{3/2}L/(DL_{c}^{1/2}),其中D为扩散系数,L为电解质厚度。利用这一响应时间,在导阶上推导了扩散电荷动力学,得到了低频阻抗的解析表达式。由于新的长度标度sqrt[λ_{D}L_{c}],我们还研究了涉及离子液体的石墨烯-金属电化学体系中双层的行为,其中静电相关长度L_{c}在线性体系中起着突出的作用。然后将结果与含有金属-金属电极对的传统电化学电池进行比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impact of electrostatic correlations on the frequency response of a graphene electrode in ionic liquid.

We investigate the frequency response of the graphene-based electrochemical systems containing room-temperature ionic liquids using the method of matched asymptotic expansion in the limit of thin double-layers to study the diffuse-charge dynamics of graphene electrodes interfaced with the ionic liquids. The theory in the framework of the asymptotic matching is mainly supported by (1) the length scale sqrt[λ_{D}L_{c}] that suitably characterizes the structure of the double layer in ionic liquids, with λ_{D} referring to the Debye length and L_{c} referring to the electrostatic correlation length, and (2) the charging time, τ_{c}=λ_{D}^{3/2}L/(DL_{c}^{1/2}), where D is the diffusion coefficient and L is the thickness of the electrolyte. With this response time, the diffuse-charge dynamics is deduced at the leading order to obtain an analytic expression for low-frequency impedance. As a result of the new length scaling sqrt[λ_{D}L_{c}], we additionally study the behavior of double-layer in graphene-metal electrochemical systems involving ionic liquids, where electrostatic correlation length L_{c} is found to play a prominent role in the linear regime. The results are then compared with the conventional electrochemical cells containing a metal-metal electrode pair.

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来源期刊
Physical Review E
Physical Review E PHYSICS, FLUIDS & PLASMASPHYSICS, MATHEMAT-PHYSICS, MATHEMATICAL
CiteScore
4.50
自引率
16.70%
发文量
2110
期刊介绍: Physical Review E (PRE), broad and interdisciplinary in scope, focuses on collective phenomena of many-body systems, with statistical physics and nonlinear dynamics as the central themes of the journal. Physical Review E publishes recent developments in biological and soft matter physics including granular materials, colloids, complex fluids, liquid crystals, and polymers. The journal covers fluid dynamics and plasma physics and includes sections on computational and interdisciplinary physics, for example, complex networks.
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