| Literature DB >> 30834664 |
Jian Luo1, Yujing Bi1, Liping Zhang1, Xiaoyin Zhang1, Tianbiao Leo Liu1.
Abstract
Mg batteries are a promising energy storage system because of the physicochemical merits of Mg as an anode material. However, the lack of electrochemically and chemically stable Mg electrolytes impedes the development of Mg batteries. In this study, a newly designed chloride-free Mg perfluorinated pinacolatoborate, Mg[B(O2 C2 (CF3 )4 )2 ]2 (abbreviated as Mg-FPB), was synthesized by a convenient method from commercially available reagents and fully characterized. The Mg-FPB electrolyte delivered outstanding electrochemical performance, specifically, 95 % Coulombic efficiency and 197 mV overpotential, enabling reversible Mg deposition, and an anodic stability of up to 4.0 V vs. Mg. The Mg-FPB electrolyte was applied to assemble a high voltage, rechargeable Mg/MnO2 battery with a discharge capacity of 150 mAh g-1 .Entities:
Keywords: energy storage; magnesium batteries; magnesium electrolytes; perfluorinated pinacolatoborate
Year: 2019 PMID: 30834664 PMCID: PMC6699509 DOI: 10.1002/anie.201902009
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336