Polysulfides in Magnesium-Sulfur Batteries

Tongtong Luo,Yang Wang,Brooke Elander, Michael Goldstein,Yu Mu, James Wilkes, Mikayla Fahrenbruch, Justin Lee, Tevin Li,Junwei Lucas Bao,Udayan Mohanty,Dunwei Wang

ADVANCED MATERIALS(2023)

引用 0|浏览8
暂无评分
摘要
Mg-S batteries hold great promise as a potential alternative to Li-based technologies. Their further development hinges on solving a few key challenges, including the lower capacity and poorer cycling performance when compared to Li counterparts. At the heart of the issues is the lack of knowledge on polysulfide chemical behaviors in the Mg-S battery environment. In this Review, a comprehensive overview of the current understanding of polysulfide behaviors in Mg-S batteries is provided. First, a systematic summary of experimental and computational techniques for polysulfide characterization is provided. Next, conversion pathways for Mg polysulfide species within the battery environment are discussed, highlighting the important role of polysulfide solubility in determining reaction kinetics and overall battery performance. The focus then shifts to the negative effects of polysulfide shuttling on Mg-S batteries. The authors outline various strategies for achieving an optimal balance between polysulfide solubility and shuttling, including the use of electrolyte additives, polysulfide-trapping materials, and dual-functional catalysts. Based on the current understanding, the directions for further advancing knowledge of Mg polysulfide chemistry are identified, emphasizing the integration of experiment with computation as a powerful approach to accelerate the development of Mg-S battery technology. A comprehensive summary of Mg polysulfide chemistry and its impact on Mg-S battery performance is reviewed. Covered topics include characterization techniques, polysulfide conversion mechanisms, solvent/electrolyte effects, and polysulfide shuttling. Strategies for inhibiting shuttling and catalyzing conversion of Mg polysulfide species, including the design of polysulfide-trapping materials and dual-functional catalysts, are discussed.image
更多
查看译文
关键词
battery materials,computational modeling,magnesium batteries,polysulfide reactions,polysulfide shuttling,polysulfide solubility,spectroscopy,sulfur cathodes
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要