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通过在微孔碳的纳米空间中去溶剂化锂离子来增强双电层电容。

Enhanced electric double-layer capacitance by desolvation of lithium ions in confined nanospaces of microporous carbon.

机构信息

Graduate School of Engineering, Nagasaki University , 1-14 Bunkyo-machi, Nagasaki, Nagasaki 852-8521, Japan.

出版信息

ACS Nano. 2014 Apr 22;8(4):3614-9. doi: 10.1021/nn500169k. Epub 2014 Mar 25.

Abstract

Carbon electrodes with specific microporous structures are strongly desired to improve the performance of electric double-layer capacitors (EDLCs). We report solvated states of Li ions in confined carbon micropores affecting specific capacitance. The average Li(+) solvation number of 1 M LiClO4/propylene carbonate (PC) electrolyte introduced into porous carbon electrodes was determined using Raman spectroscopy and (7)Li NMR. Micropores with slightly larger pore size against the solvated molecules and the narrow two-dimensional spaces decreased the solvation number, enhancing specific capacitance. Hence, specific carbon morphology may be related to high EDL capacitance, and micropore structure is important in obtaining highly capacitive EDLC materials.

摘要

具有特定微孔结构的碳电极强烈希望提高双电层电容器 (EDLC) 的性能。我们报告了受限碳微孔中锂离子的溶剂化状态对比电容的影响。使用拉曼光谱和 (7)Li NMR 确定了 1 M LiClO4/碳酸丙烯酯 (PC) 电解质引入多孔碳电极后的溶剂化锂离子的平均溶剂化数。与溶剂化分子相比,微孔孔径稍大且二维空间狭窄会降低溶剂化数,从而提高比电容。因此,特殊的碳形态可能与高 EDLC 电容有关,微孔结构对于获得高电容的 EDLC 材料很重要。

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