Mandai Toshihiko
Functional Electrolyte Synthesis Team, Research Center for Energy and Environmental Materials (GREEN), National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba, Ibaraki, 305-0044, Japan.
ChemSusChem. 2025 Jul 27;18(15):e202500418. doi: 10.1002/cssc.202500418. Epub 2025 May 4.
Rechargeable Mg metal batteries (RMMBs) have garnered significant attention due to their outstanding electrochemical energy storage performance. Ether solvents are widely used as a primary component of RMMB electrolytes because of their excellent compatibility with Mg metal. However, the poor anodic stability of ethers hinders the development of high-energy-density RMMBs. To address this limitation, researchers have explored novel electrolyte formulations based on nonethereal solvents. However, the interpretation of reported results remains controversial due to a lack of solid experimental evidence confirming Mg plating reactions in such media. This article provides an overview of Mg electrochemistry in both ethereal and nonethereal electrolyte systems. Comprehensive cyclic voltammetry studies on the electrochemical Mg plating/stripping activity in various electrolyte systems reaffirm that only a limited range of solvents-including ethers, amines, and dialkylsulfones-support reversible Mg plating/stripping. In contrast, Mg plating is rarely observed in nitrile, amide, carbonate, and phosphate electrolytes, despite voltammograms exhibiting seemingly reversible responses. These findings caution researchers against assuming voltammetric responses correspond to Mg plating/stripping without solid evidence of Mg deposits. Finally, a protocol for assessing whether proposed (uncommon) electrolyte systems genuinely support Mg plating/stripping is presented.
可充电镁金属电池(RMMBs)因其出色的电化学储能性能而备受关注。醚类溶剂由于与镁金属具有优异的兼容性,被广泛用作RMMB电解质的主要成分。然而,醚类较差的阳极稳定性阻碍了高能量密度RMMBs的发展。为了解决这一限制,研究人员探索了基于非醚类溶剂的新型电解质配方。然而,由于缺乏确凿的实验证据来证实此类介质中的镁电镀反应,对已报道结果的解读仍存在争议。本文概述了镁在醚类和非醚类电解质体系中的电化学行为。对各种电解质体系中电化学镁电镀/剥离活性的综合循环伏安研究再次证实,只有有限范围的溶剂——包括醚类、胺类和二烷基砜类——支持可逆的镁电镀/剥离。相比之下,尽管伏安图显示出看似可逆的响应,但在腈类、酰胺类、碳酸盐类和磷酸盐类电解质中很少观察到镁电镀现象。这些发现提醒研究人员,在没有镁沉积物的确凿证据的情况下,不要假定伏安响应对应于镁电镀/剥离。最后,本文提出了一个评估所提出的(不常见的)电解质体系是否真正支持镁电镀/剥离的方案。