双锰矿
材料科学
电极
电容
Crystal(编程语言)
超级电容器
电解质
电化学
化学工程
纳米材料
锰
纳米技术
冶金
氧化锰
化学
物理化学
计算机科学
工程类
程序设计语言
作者
Xu Li,Xiang Lu,Xiong Xie,Chun‐yang Zhang,Shuangyi Liu,Zhenhu Li,Jun Shen
出处
期刊:Nanotechnology
[IOP Publishing]
日期:2020-02-07
卷期号:31 (21): 215406-215406
被引量:8
标识
DOI:10.1088/1361-6528/ab73bf
摘要
Manganese dioxide (MnO2) nanomaterials with two-dimensional (2D) layered birnessite structures are promising pseudocapacitive electrode materials. However, the effects of structural factors on their electrochemical performance is not fully understood. We synthesize alkali-free crystal water containing 2D layered birnessite MnO2 electrodes with controllable mass loading from 0.1 to 19.3 mg cm-2 to investigate the effects of electrode thickness and crystal water functions on crystal structure and pseudocapacitive behavior, to promote its industrialization. We find that the crystal water enlarges the interlayer space of birnessite MnO2 with electrolyte ions transported much more easily, resulting in higher specific capacitance of 702 F g-1 (70.2 mF cm-2) and excellent cycling stability of 20 000 charge-discharge cycles even at a mass loading of up to 10.8 mg cm-2. Such gains in specific capacitance are weakened significantly with raised mass loading. Thus, compared to a carbon cloth substrate, a carbon nanotube film with enhanced electron space transport capability presents better performance, indicating an effective strategy for higher mass loading cases. The present work sheds light on an efficient method for achieving high capacitance and mass loading together, for practical applications.
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