Emergence of nonaqueous electrolytes for rechargeable zinc batteries

被引:13
|
作者
Kar, Mega [1 ]
Pozo-Gonzalo, Cristina [2 ]
机构
[1] Monash Univ, Sch Chem, Clayton, Vic 3800, Australia
[2] Deakin Univ, ARC Ctr Excellence Electromat Sci, Melbourne, Vic 3125, Australia
基金
澳大利亚研究理事会;
关键词
IONIC LIQUID ELECTROLYTES; DEEP EUTECTIC SOLVENTS; DENDRITE-FREE ZINC; 1-ETHYL-3-METHYLIMIDAZOLIUM ACETATE; TRANSPORT-PROPERTIES; HIGH-VOLTAGE; ELECTRODEPOSITION; WATER; PROGRESS; SALT;
D O I
10.1016/j.cogsc.2020.100426
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In the quest for safer and cheaper batteries, rechargeable batteries based on zinc demonstrate great potential in many energy storage applications. Zinc is cheap, safe and abundant. Despite this, the commercialisation of rechargeable zinc batteries, particularly based on aqueous electrolytes, remains significantly challenging, mainly due dendritic growth and passivation of zinc which inhibits its long-term cycle stability. Herein, we provide a comprehensive review on some of the recently emerging nonaqueous electrolytes, including organic solvents, superconcentrated salts, deep eutectic mixtures and ionic liquids, which offer many advantages over aqueous systems. We also discuss some of the challenges that need to be addressed to establish rechargeable zinc batteries as a mainstream option.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Glyme-based nonaqueous electrolytes for rechargeable lithium cells
    Tobishima, S
    Morimoto, H
    Aoki, M
    Saito, Y
    Inose, T
    Fukumoto, T
    Kuryu, T
    ELECTROCHIMICA ACTA, 2004, 49 (06) : 979 - 987
  • [42] Multi-component nonaqueous electrolytes for rechargeable lithium cells
    Tobishima, SI
    Hayashi, K
    Nemoto, Y
    Yamaki, JI
    ELECTROCHIMICA ACTA, 1998, 43 (08) : 925 - 933
  • [43] Solvation and desolvation in nonaqueous zinc batteries
    Fister, Tim
    Kim, Soojeong
    Han, Sang-Don
    Bassett, Kimberly
    Ta, Kim
    See, Kimberly
    Gewirth, Andrew
    Rajput, Nav Nidhi
    Persson, Kristin
    Fenter, Paul
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2017, 254
  • [44] Nanoscale modelling of polymer electrolytes for rechargeable batteries
    Zhang, Heng
    Chen, Fangfang
    Carrasco, Javier
    ENERGY STORAGE MATERIALS, 2021, 36 : 77 - 90
  • [45] Polymer electrolytes for rechargeable lithium metal batteries
    Li, Hongping
    Xu, Zhixin
    Yang, Jun
    Wang, Jiulin
    Hirano, Shin-ichi
    SUSTAINABLE ENERGY & FUELS, 2020, 4 (11) : 5469 - 5487
  • [46] ORGANIC ADDITIVES FOR THE ELECTROLYTES OF RECHARGEABLE LITHIUM BATTERIES
    MATSUDA, Y
    MORITA, M
    JOURNAL OF POWER SOURCES, 1989, 26 (3-4) : 579 - 583
  • [47] Rechargeable magnesium batteries: Electrolytes, cathodes, and beyond
    Li, Guosheng
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 250
  • [48] Electrolytes for Rechargeable Lithium-Air Batteries
    Lai, Jingning
    Xing, Yi
    Chen, Nan
    Li, Li
    Wu, Feng
    Chen, Renjie
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (08) : 2974 - 2997
  • [49] Concentrated electrolytes for rechargeable lithium metal batteries
    Tian, Chunxi
    Qin, Kun
    Suo, Liumin
    MATERIALS FUTURES, 2023, 2 (01):
  • [50] Eutectic Electrolytes Chemistry for Rechargeable Zn Batteries
    Lu, Xuejun
    Hansen, Evan J.
    He, Guanjie
    Liu, Jian
    SMALL, 2022, 18 (21)