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题名

Ion storage mechanism of δ-MnO2 as supercapacitor cathode in multi-ion aqueous electrolyte: Experimental and theoretical analysis

作者
通讯作者He,Mingquan; Hu,Chenguo
发表日期
2021-10-18
DOI
发表期刊
ISSN
0003-6951
EISSN
1077-3118
卷号119期号:16
摘要

The ion storage mechanism and ion concentration play crucial roles in determining the electrochemical energy storage performances of multi-ion-based batteries and/or capacitors. Here, we take δ-MnO-ASO (A = Li, Na, K) as an example system to explore the physical and chemical mechanisms related to electrochemical energy storage using experimental analysis and first-principles calculations. Among the studied systems, superior capacitance performance is found in δ-MnO-LiSO due to excellent mobility (migration barrier 0.168 eV) of lithium ions. Better cycling stability appears in δ-MnO-KSO, which is attributed to larger adsorption energy (−0.655 eV) between potassium ions and δ-MnO. Moreover, compared with a pure LiSO electrolyte, our calculations suggest that incorporation of moderate NaSO or KSO into the LiSO electrolyte could considerably elongate the cycling lifetime. Overdose of Na or K is, however, adverse to the capacitance performance as verified by our experiments. We argue that the dominance role of Na or K ions played in the hybrid electrolyte originates from the larger formation enthalpy and adsorption energy of Na or K when reacting with δ-MnO compared with those of Li. Our findings suggest that understanding of the ion storage mechanism can provide useful clues for searching the proper ion concentration ratio, which takes advantages of individual ions in multi-ion-based δ-MnO electrochemical energy storage devices.

相关链接[Scopus记录]
收录类别
SCI ; EI
语种
英语
重要成果
NI期刊
学校署名
其他
资助项目
National Natural Science Foundation of China[11904040,51732005] ; Chongqing Research Program of Basic Research and Frontier Technology, China[cstc2020jcyj-msxmX0263] ; Fundamental Research Funds for the Central Universities, China["2020CDJQY-A056","2020CDJ-LHZZ-010","2020CDJQY-Z006"] ; Projects of President Foundation of Chongqing University, China[2019CDXZWL002] ; Guangdong Provincial Key Laboratory of Energy Materials for Electric Power[2018B030322001]
WOS研究方向
Physics
WOS类目
Physics, Applied
WOS记录号
WOS:000749441900001
出版者
EI入藏号
20214311056007
EI主题词
Calculations ; Capacitance ; Chemical analysis ; Electrolytes ; Energy storage ; Ions ; Lithium compounds ; Lithium-ion batteries ; Potash ; Sodium sulfate ; Sulfur compounds ; Supercapacitor
EI分类号
Energy Storage:525.7 ; Electricity: Basic Concepts and Phenomena:701.1 ; Electric Batteries and Fuel Cells:702 ; Electric Components:704.1 ; Chemical Agents and Basic Industrial Chemicals:803 ; Chemical Products Generally:804 ; Inorganic Compounds:804.2 ; Mathematics:921
ESI学科分类
PHYSICS
Scopus记录号
2-s2.0-85117501838
来源库
Scopus
引用统计
被引频次[WOS]:7
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/254505
专题南方科技大学
理学院_物理系
作者单位
1.Department of Applied Physics,Chongqing University,Chongqing,400044,China
2.School of Physical Science and Technology,Ningbo University,Ningbo,315000,China
3.Guangdong Provincial Key Laboratory of Energy Materials for Electric Power,Southern University of Science and Technology,Shenzhen,518055,China
推荐引用方式
GB/T 7714
Wan,Jing,Gu,Xiao,Ji,Peiyuan,et al. Ion storage mechanism of δ-MnO2 as supercapacitor cathode in multi-ion aqueous electrolyte: Experimental and theoretical analysis[J]. APPLIED PHYSICS LETTERS,2021,119(16).
APA
Wan,Jing.,Gu,Xiao.,Ji,Peiyuan.,Li,Jien.,Lu,Junlin.,...&Hu,Chenguo.(2021).Ion storage mechanism of δ-MnO2 as supercapacitor cathode in multi-ion aqueous electrolyte: Experimental and theoretical analysis.APPLIED PHYSICS LETTERS,119(16).
MLA
Wan,Jing,et al."Ion storage mechanism of δ-MnO2 as supercapacitor cathode in multi-ion aqueous electrolyte: Experimental and theoretical analysis".APPLIED PHYSICS LETTERS 119.16(2021).
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