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Competitive nucleation and growth behavior in Li-Se batteries

Authors
Um, Ji HyunJin, AihuaHuang, XinSeok, JeesooPark, Seong SooMoon, JanghyukKim, MihyunKim, So HeeKim, Hyun SikCho, Sung-PyoAbruna, Hector D.Yu, Seung-Ho
Issue Date
13-Apr-2022
Publisher
ROYAL SOC CHEMISTRY
Citation
ENERGY & ENVIRONMENTAL SCIENCE, v.15, no.4, pp.1493 - 1502
Indexed
SCIE
SCOPUS
Journal Title
ENERGY & ENVIRONMENTAL SCIENCE
Volume
15
Number
4
Start Page
1493
End Page
1502
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/140402
DOI
10.1039/d1ee03619j
ISSN
1754-5692
Abstract
As a promising cathode material, selenium has attracted a great deal of research interest due to its high theoretical capacity analogous to sulfur in lithium-chalcogen batteries. However, unlike S cathodes, mechanistic understanding including fundamental observations on the formation of Li2Se and Se deposits, and their dissolution in Se cathodes remains at an early stage. Here, we directly visualize the dissolution and deposition reactions of Se cathodes using operando transmission X-ray microscopy, and build a nucleation site distribution map by tracking the individual solidification of electrolyte-soluble polyselenide intermediates into Se deposits. This real-time analysis reveals the nucleation behavior dependent on the depletion of polyselenides as well as the morphological characteristics through their subsequent growth, along with the different nucleation modes for particle-like Li2Se upon discharge and dendritic Se upon charge. We further propose that appropriate operating conditions, prioritizing the nucleation over the growth, can effectively utilize Se, precluding the dendritic growth.
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