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On the hierarchy of the influences of porous and electronic structures of carbonaceous materials on parameters of molecular storage devices

机译:关于碳质材料的多孔和电子结构对分子存储装置参数的影响的层次结构

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摘要

The relation between porous structure, electronic properties of carbonaceous material and the capacitance of its interface with an electrolyte is discussed. It is shown that, in an electric double-layer, the contribution of pseudocapacitive charge accumulation is determined, mainly, by the position of Fermi level in the carbonaceous material and depends on thermodynamic parameters of ions in the electrolytic solution. The sizes of the pores in which the processes of capacitive and pseudocapacitive charge accumulation dominate are determined. Theoretical analysis of the processes taking place on the nanoporous carbon|electrolyte interface has made it possible to recognize the intercalative nature of pseudocapacity and to find the criterion of its manifestation in the form of the formation of a continuous series of stable valency phases.
机译:讨论了多孔结构,含碳材料的电子性能及其与电解质的界面电容之间的关系。结果表明,在双电层中,伪电容电荷积累的贡献主要取决于碳质材料中费米能级的位置,并且取决于电解液中离子的热力学参数。确定了其中电容性和伪电容性电荷累积过程占主导的孔的尺寸。对在纳米多孔碳界面上发生的过程的理论分析使得有可能认识假容量的插入性质,并以形成连续的稳定价态相的形式找到其表现的标准。

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