The Charge Storage Mechanisms of 2D Cation-Intercalated Manganese Oxide in Different Electrolytes
Ji HX(季恒星)2; Lei SL(类淑来)3; Zhang QN(张庆暖)3; Mikhael D. Levi6; Dou QY(窦青云)3,5; Chai YG(柴胤光)2; Lu YL(鲁玉兰)7; Liu B(刘宝)3,5; Bu XD(卜旭东)1; Yan XB(阎兴斌)3,4
刊名Advanced Energy Materials
2018-11-29
卷号8期号:34页码:1-10
关键词Supercapacitor Cation-intercalated Manganese Oxide Charge Storage Mechanism Operando Raman Electrochemical Quartz Crystal Microbalance
DOI10.1002/aenm.201802707
英文摘要

2D ion-intercalated metal oxides are emerging promising new electrodes for supercapacitors because of their unique layered structure as well as distinctive electronic properties. To facilitate their application, fundamental study of the charge storage mechanism is required. Herein, it is demonstrated that the application of in situ Raman spectroscopy and electrochemical quartz crystal microbalance with dissipation monitoring (EQCM-D), provides a sufficient basis to elucidate the charge storage mechanism in a typical 2D cation-intercalated manganese oxide (Na0.55Mn2O4·1.5H2O, abbreviated as NMO) in neutral and alkaline aqueous electrolytes. The results reveal that in neutral Na2SO4 electrolytes, NMO mainly displays a surface-controlled pseudocapacitive behavior in the low potential region (0–0.8 V), but when the potential is higher than 0.8 V, an intercalation pseudocapacitive behavior becomes dominant. By contrast, NMO shows a battery-like behavior associated with OH− ions in alkaline NaOH electrolyte. This study verifies that the charge storage mechanism of NMO strongly depends on the type of electrolyte, and even in the same electrolyte, different charging behaviors are revealed in different potential ranges which should be carefully taken into account when optimizing the use of the electrode materials in practical energy-storage devices.

语种英语
内容类型期刊论文
源URL[http://210.77.64.217/handle/362003/24751]  
专题兰州化学物理研究所_清洁能源化学与材料实验室
通讯作者Yan XB(阎兴斌)
作者单位1.School of Material Science and Engineering Lanzhou University of Technology Lanzhou China
2.Department of Materials Science and Engineering University of Science and Technology of China Hefei China
3.Laboratory of Clean Energy Chemistry and Materials State Key Laboratory of Solid Lubrication Lanzhou Institute of Chemical Physics Chinese of Academy of Sciences Lanzhou China
4.Dalian National Laboratory for Clean Energy Dalian Institute of Chemical Physics Chinese Academy of Sciences Dalian China
5.Center of Materials Science and Opoelectronics Engineering University of Chinese Academy of Sciences Beijing China
6.Department of Chemistry Bar-Ilan University Ramat-Gan Israel
7.School of Physical Science and Technology Lanzhou University Lanzhou China
推荐引用方式
GB/T 7714
Ji HX,Lei SL,Zhang QN,et al. The Charge Storage Mechanisms of 2D Cation-Intercalated Manganese Oxide in Different Electrolytes[J]. Advanced Energy Materials,2018,8(34):1-10.
APA Ji HX.,Lei SL.,Zhang QN.,Mikhael D. Levi.,Dou QY.,...&Ma PJ.(2018).The Charge Storage Mechanisms of 2D Cation-Intercalated Manganese Oxide in Different Electrolytes.Advanced Energy Materials,8(34),1-10.
MLA Ji HX,et al."The Charge Storage Mechanisms of 2D Cation-Intercalated Manganese Oxide in Different Electrolytes".Advanced Energy Materials 8.34(2018):1-10.
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