Due to the numerous advantages, such as high specific capacity, etc., lithium-sulfur batteries (Li-S batteries) have attracted much attention as next-generation energy storage
systems. To meet future needs for commercial application, Li-S batteries will require both improved cycle life and high energy density. It is of critical importance to understand the
fundamental mechanisms in Li-S system to further improve the whole battery performance. Various advanced characterization techniques, over the past few years, have proven their important role in promoting the mechanism understanding for Li-S batteries. Here, we review the recent progress of mechanism understanding, including redox reactions, Li polysulfides dissolution, and etc., in Li-S systems based on the advanced characterization techniques.
Special focus is placed on how these advanced characterization techniques are being employed and what characteristic or capability they possess. The necessity of combination of multiple characterization, difference between ex situ and in situ experimental methods, as well as importance of characterization conditions in Li-S batteries are also discussed.
Revised: January 11, 2019 |
Published: September 19, 2018
Citation
Zhao E., K. Nie, X. Yu, Y. Hu, F. Wang, J. Xiao, and H. Li, et al. 2018.Advanced Characterization Techniques in Promoting Mechanism Understanding for Lithium-Sulfur Batteries.Advanced Functional Materials 28, no. 38:Article No. 1707543.PNNL-SA-131442.doi:10.1002/adfm.201707543