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A continuum study of layer analysis for single species ion transport inside double-layered graphene sheets with various separations

机译:连续分析双层石墨烯片内单种离子传输的层分析的连续性

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摘要

We investigate the formation of thin ionic layers driven by electro-osmotic forces, that are commonly found in micro- and nano-channels. Recently, multi-layers have been reported in the literature. However, the relation between classical Debye layers and multi-layers, which is a practically and fundamentally important question, was previously unexplained. Here, we fill this gap by using a continuum approach to investigate the flow of lithium ions inside double-layered graphene sheets. Fluid flow, charge conductivity and thermal stability will be investigated. We show that the separation and strength of forces between the sheets, the external electric field and thermal effects determine the topology of the ionic layers between the graphene sheets.
机译:我们研究了由电渗透力驱动的离子薄层的形成,这在微通道和纳米通道中很常见。最近,在文献中已经报道了多层。然而,以前无法解释经典的德拜层与多层之间的关系,这是一个在实践上和根本上很重要的问题。在这里,我们通过使用连续介质方法来研究锂离子在双层石墨烯片内部的流动,从而填补了这一空白。将研究流体流动,电荷传导率和热稳定性。我们表明,片之间的力的分离和强度,外部电场和热效应决定了石墨烯片之间离子层的拓扑。

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