Reversible Magnesium Metal Anode Enabled by Cooperative Solvation/Surface Engineering in Carbonate Electrolytes

被引:2
|
作者
Caiyun Wang [1 ,2 ]
Yao Huang [1 ,2 ]
Yunhao Lu [1 ]
Hongge Pan [1 ,3 ]
Ben Bin Xu [4 ]
Wenping Sun [1 ]
Mi Yan [1 ]
Yinzhu Jiang [1 ,2 ]
机构
[1] School of Materials Science and Engineering, State Key Laboratory of Clean Energy Utilization, Zhejiang University
[2] ZJU-Hangzhou Global Scientific and Technological Innovation Centre, Zhejiang University
[3] Institute of Science and Technology for New Energy, Xi'an Technological University
[4] Mechanical and Construction Engineering, Faculty of Engineering and Environment, Northumbria University
基金
中国国家自然科学基金; 中央高校基本科研业务费专项资金资助;
关键词
D O I
暂无
中图分类号
TM912 [蓄电池]; TG146.22 [];
学科分类号
080502 ; 0808 ;
摘要
Magnesium metal anode holds great potentials toward future high energy and safe rechargeable magnesium battery technology due to its divalent redox and dendrite-free nature. Electrolytes based on Lewis acid chemistry enable the reversible Mg plating/stripping, while they fail to match most cathode materials toward highvoltage magnesium batteries. Herein, reversible Mg plating/stripping is achieved in conventional carbonate electrolytes enabled by the cooperative solvation/surface engineering. Strongly electronegative Cl from the MgCl2additive of electrolyte impairs the Mg…O = C interaction to reduce the Mg2+desolvation barrier for accelerated redox kinetics,while the Mg2+-conducting polymer coating on the Mg surface ensures the facile Mg2+migration and the e ective isolation of electrolytes. As a result, reversible plating and stripping of Mg is demonstrated with a low overpotential of 0.7 V up to 2000 cycles. Moreover, benefitting from the wide electrochemical window of carbonate electrolytes, high-voltage(> 2.0 V) rechargeable magnesium batteries are achieved through assembling the electrode couple of Mg metal anode and Prussian blue-based cathodes. The present work provides a cooperative engineering strategy to promote the application of magnesium anode in carbonate electrolytes toward high energy rechargeable batteries.
引用
收藏
页码:117 / 127
页数:11
相关论文
共 50 条
  • [21] Reversible Mg metal anode in conventional electrolyte enabled by durable heterogeneous SEI with low surface diffusion barrier
    Li, Yajie
    Zhou, Xuejun
    Hu, Jiulin
    Zheng, Yongjian
    Huang, Minsong
    Guo, Kai
    Li, Chilin
    ENERGY STORAGE MATERIALS, 2022, 46 : 1 - 9
  • [22] A Review on Regulating Li+ Solvation Structures in Carbonate Electrolytes for Lithium Metal Batteries
    Piao, Zhihong
    Gao, Runhua
    Liu, Yingqi
    Zhou, Guangmin
    Cheng, Hui-Ming
    ADVANCED MATERIALS, 2023, 35 (15)
  • [23] Stable Anion-Rectifying Poly(alkoxide magnesium) Electrolytes for Reversible Magnesium Metal Batteries
    Ge, Xuesong
    Song, Fuchen
    Du, Aobing
    Sun, Gaohao
    Zhang, Shu
    Zhao, Jingwen
    Zhang, Qingwei
    Zhou, Xinhong
    Zhang, Botao
    Cui, Guanglei
    ACS ENERGY LETTERS, 2023, 8 (09) : 3685 - 3692
  • [24] Highly Reversible Zinc Metal Anodes Enabled by Solvation Structure and Interface Chemistry Modulation
    Wang, Xiao
    Feng, Kaiqiang
    Sang, Bingyan
    Li, Guijin
    Zhang, Zhengchunyu
    Zhou, Guowei
    Xi, Baojuan
    An, Xuguang
    Xiong, Shenglin
    ADVANCED ENERGY MATERIALS, 2023, 13 (36)
  • [25] A Bismuth-Based Protective Layer for Magnesium Metal Anode in Noncorrosive Electrolytes
    Zhao, Yimin
    Du, Aobing
    Dong, Shanmu
    Jiang, Feng
    Guo, Ziyang
    Ge, Xuesong
    Qu, Xuelian
    Zhou, Xinhong
    Cui, Guanglei
    ACS ENERGY LETTERS, 2021, 6 (07) : 2594 - 2601
  • [26] A Novel Potassium Salt Regulated Solvation Chemistry Enabling Excellent Li-Anode Protection in Carbonate Electrolytes
    Zhang, Shenghang
    Zhuang, Xiangchun
    Du, Xiaofan
    Zhang, Xiaohu
    Li, Jiedong
    Xu, Gaojie
    Ren, Zhongqin
    Cui, Zili
    Huang, Lang
    Wang, Shitao
    Sun, Fun
    Qiao, Lixin
    Dong, Shanmu
    Cui, Guanglei
    ADVANCED MATERIALS, 2023, 35 (25)
  • [27] High-Efficiency Lithium-Metal Anode Enabled by Liquefied Gas Electrolytes
    Yang, Yangyuchen
    Davies, Daniel M.
    Yin, Yijie
    Borodin, Oleg
    Lee, Jungwoo Z.
    Fang, Chengcheng
    Olguin, Marco
    Zhang, Yihui
    Sablina, Ekaterina S.
    Wang, Xuefeng
    Rustomji, Cyrus S.
    Meng, Y. Shirley
    JOULE, 2019, 3 (08) : 1986 - 2000
  • [28] High-Efficiency Zinc-Metal Anode Enabled by Liquefied Gas Electrolytes
    Ma, Lin
    Lee, Jungwoo Z.
    Pollard, Travis P.
    Schroeder, Marshall A.
    Limpert, Matthew A.
    Craven, Brian
    Fess, Scott
    Rustomji, Cyrus S.
    Wang, Chunsheng
    Borodin, Oleg
    Xu, Kang
    ACS ENERGY LETTERS, 2021, 6 (12) : 4426 - 4430
  • [29] Reversible Graphite Anode Cycling with PC-Based Electrolytes Enabled by Added Sulfur Trioxide Complexes
    Demeaux, Julien
    Dong, Yingnan
    Lucht, Brett L.
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 2017, 164 (07) : A1352 - A1360
  • [30] Highly Stable Lithium Metal Batteries Enabled by Regulating the Solvation of Lithium Ions in Nonaqueous Electrolytes
    Zhang, Xue-Qiang
    Chen, Xiang
    Cheng, Xin-Bing
    Li, Bo-Quan
    Shen, Xin
    Yan, Chong
    Huang, Jia-Qi
    Zhang, Qiang
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (19) : 5301 - 5305