Progress in retrospect of electrolytes for secondary magnesium batteries

被引:108
作者
Shuai, Honglei [1 ]
Xu, Jing [1 ]
Huang, Kejing [1 ]
机构
[1] Xinyang Normal Univ, Coll Chem & Chem Engn, Xinyang 464000, Peoples R China
基金
中国国家自然科学基金;
关键词
Rechargeable magnesium batteries; Electrolytes; Liquid state electrolytes; Solid state electrolytes; Molten salts system; SOLID POLYMER ELECTROLYTES; WIDE ELECTROCHEMICAL WINDOWS; IONIC CONDUCTANCE BEHAVIOR; RECHARGEABLE MG BATTERIES; ALUMINUM-CHLORIDE COMPLEX; ROOM-TEMPERATURE; GRIGNARD-REAGENT; STRUCTURAL-CHARACTERIZATION; REVERSIBLE DEPOSITION; LIQUID ELECTROLYTES;
D O I
10.1016/j.ccr.2020.213478
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Developing security and next-generation battery systems have attracted much attention for fulfilled the green development requirements. Among of multivalent-ion batteries candidates, magnesium (Mg) batteries may be the most feasible choice due to its high electrode potential, large theoretical volume capacity, superior safety and abundant source. Nevertheless, the researches of rechargeable Mg batteries still remain at a nascent stage because of a significant challenge of the development of a suitable electrolyte with low flammability and cost, high conductivity, and compatibility with Mg anode. Another major obstacle is lack of an appropriate cathode hosts with large electrochemical window required for Mg2+ insertion. Therefore, recent studies are critical in developing advanced Mg electrolytes with high voltage windows (>4.0 V) and being compatible with Mg-metal anodes to overcome the above-mentioned issues. In this work, we introduce a review on the challenges, development and adopted promising strategies for Mg rechargeable batteries electrolytes. This comprehensive review covers all three classifications Mg-ion batteries electrolytes such as liquid state electrolytes (inorganic electrolytes, boron based electrolytes, magnesium organo-haloaluminate based electrolytes, phenolate or alkoxide salts based electrolytes and non-nucleophilic electrolytes), solid state electrolytes (inorganic solid electrolytes and polymeric electrolytes) and molten salts system (ionic liquid and high temperature molten salts), which can enable researchers to grasp the prevailing challenges, and motivate them to design novel electrolyte candidates for commercial application. (C) 2020 Elsevier B.V. All rights reserved.
引用
收藏
页数:32
相关论文
共 184 条
[21]   Optimal sizing and location based on economic parameters for an off-grid application of a hybrid system with photovoltaic, battery and diesel technology [J].
Cai, Wei ;
Li, Xing ;
Maleki, Akbar ;
Pourfayaz, Fathollah ;
Rosen, Marc A. ;
Nazari, Mohammad Alhuyi ;
Dieu Tien Bui .
ENERGY, 2020, 201
[22]  
Canepa P., 2012, CHEM MATER, V7, P3317
[23]   Elucidating the structure of the magnesium aluminum chloride complex electrolyte for magnesium-ion batteries [J].
Canepa, Pieremanuele ;
Jayaraman, Saivenkataraman ;
Cheng, Lei ;
Rajput, Nav Nidhi ;
Richards, William D. ;
Gautam, Gopalakrishnan Sai ;
Curtiss, Larry A. ;
Persson, Kristin A. ;
Ceder, Gerbrand .
ENERGY & ENVIRONMENTAL SCIENCE, 2015, 8 (12) :3718-3730
[24]   Understanding the Initial Stages of Reversible Mg Deposition and Stripping in Inorganic Nonaqueous Electrolytes [J].
Canepa, Pieremanuele ;
Gautam, Gopalakrishnan Sai ;
Malik, Rahul ;
Jayaraman, Saivenkataraman ;
Rong, Ziqin ;
Zavadil, Kevin R. ;
Persson, Kristin ;
Ceder, Gerbrand .
CHEMISTRY OF MATERIALS, 2015, 27 (09) :3317-3325
[25]   Boron Clusters as Highly Stable Magnesium-Battery Electrolytes [J].
Carter, Tyler J. ;
Mohtadi, Rana ;
Arthur, Timothy S. ;
Mizuno, Fuminori ;
Zhang, Ruigang ;
Shirai, Soichi ;
Kampf, Jeff W. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2014, 53 (12) :3173-3177
[26]   Electrochemical behaviour of magnesium ions in the equimolar CaCl2-NaCl mixture at 550 degrees C [J].
Castrillejo, Y ;
Martinez, AM ;
Pardo, R ;
Haarberg, GM .
ELECTROCHIMICA ACTA, 1997, 42 (12) :1869-1876
[27]   Synergetic Role of Li+ during Mg Electrodeposition/Dissolution in Borohydride Diglyme Electrolyte Solution: Voltammetric Stripping Behaviors on a Pt Microelectrode Indicative of Mg-Li Alloying and Facilitated Dissolution [J].
Chang, Jinho ;
Haasch, Richard T. ;
Kim, Jinwoo ;
Spila, Timothy ;
Braun, Paul V. ;
Gewirth, Andrew A. ;
Nuzzo, Ralph G. .
ACS APPLIED MATERIALS & INTERFACES, 2015, 7 (04) :2494-2502
[28]   Highly active electrolytes for rechargeable Mg batteries based on a [Mg2(μ-Cl)2]2+ cation complex in dimethoxyethane [J].
Cheng, Yingwen ;
Stolley, Ryan M. ;
Han, Kee Sung ;
Shao, Yuyan ;
Arey, Bruce W. ;
Washton, Nancy M. ;
Mueller, Karl T. ;
Helm, Monte L. ;
Sprenkle, Vincent L. ;
Liu, Jun ;
Li, Guosheng .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (20) :13307-13314
[29]   Controlling the Intercalation Chemistry to Design High-Performance Dual-Salt Hybrid Rechargeable Batteries10.1021/ja508463z [J].
Cho, Jae-Hyun ;
Aykol, Muratahan ;
Kim, Soo ;
Ha, Jung-Hoon ;
Wolverton, C. ;
Chung, Kyung Yoon ;
Kim, Kwang-Bum ;
Cho, Byung-Won .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2014, 136 (46) :16116-16119
[30]   Solid-state rechargeable magnesium batteries [J].
Chusid, O ;
Gofer, Y ;
Gizbar, H ;
Vestfrid, Y ;
Levi, E ;
Aurbach, D ;
Riech, I .
ADVANCED MATERIALS, 2003, 15 (7-8) :627-630