Solvent control of water O-H bonds for highly reversible zinc ion batteries

被引:174
|
作者
Wang, Yanyan [1 ]
Wang, Zhijie [1 ]
Pang, Wei Kong [2 ]
Lie, Wilford [3 ]
Yuwono, Jodie A. [1 ,4 ]
Liang, Gemeng [1 ]
Liu, Sailin [1 ]
D' Angelo, Anita M. [5 ]
Deng, Jiaojiao
Fan, Yameng [2 ]
Davey, Kenneth [1 ]
Li, Baohua [6 ,7 ]
Guo, Zaiping [1 ]
机构
[1] Univ Adelaide, Sch Chem Engn & Adv Mat, Adelaide, SA 5005, Australia
[2] Univ Wollongong, Inst Superconducting & Elect Mat, Wollongong, NSW 2500, Australia
[3] Univ Wollongong, Sch Chem & Mol Biosci, Wollongong, NSW 2500, Australia
[4] Australian Natl Univ, Coll Engn & Comp Sci, Canberra, ACT 2601, Australia
[5] Australian Nucl Sci & Technol Org ANSTO, Australian Synchrotron, Clayton, Vic 3168, Australia
[6] Tsinghua Univ, Tsinghua Shenzhen Int Grad Sch, Shenzhen Key Lab Power Battery Safety, Shenzhen 518055, Peoples R China
[7] Tsinghua Univ, Shenzhen Geim Graphene Ctr, Tsinghua Shenzhen Int Grad Sch, Shenzhen 518055, Peoples R China
基金
澳大利亚研究理事会;
关键词
SHAPE CONTROL; ENERGY; PERSPECTIVES; FUNDAMENTALS; ELECTROLYTE;
D O I
10.1038/s41467-023-38384-x
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Aqueous Zn-ion batteries have attracted increasing research interest; however, the development of these batteries has been hindered by several challenges, including dendrite growth, Zn corrosion, cathode material degradation, limited temperature adaptability and electrochemical stability window, which are associated with water activity and the solvation structure of electrolytes. Here we report that water activity is suppressed by increasing the electron density of the water protons through interactions with highly polar dimethylacetamide and trimethyl phosphate molecules. Meanwhile, the Zn corrosion in the hybrid electrolyte is mitigated, and the electrochemical stability window and the operating temperature of the electrolyte are extended. The dimethylacetamide alters the surface energy of Zn, guiding the (002) plane dominated deposition of Zn. Molecular dynamics simulation evidences Zn2+ ions are solvated with fewer water molecules, resulting in lower lattice strain in the NaV3O8 center dot 1.5H(2)O cathode during the insertion of hydrated Zn2+ ions, boosting the lifespan of Zn|| NaV3O8 center dot 1.5H(2)O cell to 3000 cycles. The electrochemical performance of aqueous zinc ion batteries is limited by water activity. Here, the authors propose a hybrid electrolyte that incorporate strongly polar molecules to strengthen the water O-H bonds, thus reduce water activity and improve the electrochemical performance of the batteries.
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页数:11
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