Rechargeable Magnesium–Sulfur Battery Technology: State of the Art and Key Challenges

阳极 阴极 材料科学 电解质 分离器(采油) 储能 电池(电) 有机自由基电池 硫黄 纳米技术 工艺工程 冶金 电气工程 工程类 化学 电极 功率(物理) 物理化学 物理 热力学 量子力学
作者
Pei‐Wen Wang,Michael R. Buchmeiser
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:29 (49) 被引量:79
标识
DOI:10.1002/adfm.201905248
摘要

Abstract Inspired by the first rechargeable Mg battery about 20 years ago, based on a Chevrel phase cathode, a Mg foil anode, and a magnesium organo‐aluminate electrolyte, research on rechargeable batteries using sulfur as the cathode together with Mg as the anode has gained substantial and increasing interest. In particular, the safety characteristics of magnesium–sulfur (Mg–S) batteries, the high abundance of both magnesium and sulfur, and the high theoretical volumetric energy density of magnesium render this system specifically interesting for mobile applications that require high volumetric energy densities, i.e., the automotive and aviation sector. While the development of Mg–S batteries is still at a nascent stage, some breakthroughs have already been accomplished. Consequently, it appears necessary to provide a comprehensive up‐to‐date review about the current achievements to facilitate further improvements in this field. In this review, the state of the art in Mg–S batteries is summarized, focusing on sulfur conversion cathodes, magnesium anode materials, currently employed electrolyte systems, as well as on current collectors and separator design. In addition, the challenges and some possible future work to realize a practically applicable and technically viable Mg–S battery are highlighted.
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