"Water-in-Salt" Electrolyte Makes Aqueous Sodium-Ion Battery Safe, Green, and Long-Lasting

被引:556
作者
Suo, Liumin [1 ]
Borodin, Oleg [2 ]
Wang, Yuesheng [3 ]
Rong, Xiaohui [3 ]
Sun, Wei [1 ]
Fan, Xiiulin [1 ]
Xu, Shuyin [3 ]
Schroeder, Marshall A. [2 ]
Cresce, Arthur V. [2 ]
Wang, Fei [1 ]
Yang, Chongyin [1 ]
Hu, Yong-Sheng [3 ]
Xu, Kang [2 ]
Wang, Chunsheng [1 ]
机构
[1] Univ Maryland, Dept Chem & Biomol Engn, College Pk, MD 20740 USA
[2] US Army, Res Lab, Sensor & Electron Devices Directorate, Electrochem Branch,Power & Energy Div, Adelphi, MD 20783 USA
[3] Univ Chinese Acad Sci, Beijing Key Lab New Energy Mat & Devices, Beijing Natl Lab Condensed Matter Phys,Inst Phys, Key Lab Renewable Energy,Sch Phys Sci,Chinese Aca, Beijing 100190, Peoples R China
基金
国家重点研发计划;
关键词
aqueous sodium-ion electrolyte; aqueous sodium-ion batteries; high concentrated electrolyte; sodium-ion batteries; water-in-salt; HIGH-RATE ANODE; ENERGY-STORAGE; RECHARGEABLE BATTERIES; STABILITY; NATI2(PO4)(3); POLYIMIDE; LI;
D O I
10.1002/aenm.201701189
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Narrow electrochemical stability window (1.23 V) of aqueous electrolytes is always considered the key obstacle preventing aqueous sodium-ion chemistry of practical energy density and cycle life. The sodium-ion water-in-salt electrolyte (NaWiSE) eliminates this barrier by offering a 2.5 V window through suppressing hydrogen evolution on anode with the formation of a Na+-conducting solid-electrolyte interphase (SEI) and reducing the overall electrochemical activity of water on cathode. A full aqueous Na-ion battery constructed on Na-0.66[Mn0.66Ti0.34]O-2 as cathode and NaTi2(PO4)(3) as anode exhibits superior performance at both low and high rates, as exemplified by extraordinarily high Coulombic efficiency (>99.2%) at a low rate (0.2 C) for >350 cycles, and excellent cycling stability with negligible capacity losses (0.006% per cycle) at a high rate (1 C) for >1200 cycles. Molecular modeling reveals some key differences between Li-ion and Na-ion WiSE, and identifies a more pronounced ion aggregation with frequent contacts between the sodium cation and fluorine of anion in the latter as one main factor responsible for the formation of a dense SEI at lower salt concentration than its Li cousin.
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页数:10
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