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Multi-Scale tailoring of lithium ion diffusion from densification to coarseningopen access

Authors
Park, SujinMoon, JanghyukJang, SeongwanZhang, HaitaoBae, Chang-Jun
Issue Date
Mar-2023
Publisher
Elsevier Ltd
Keywords
Coarsening; Densification; Highly energy densified electrode; Li-diffusion; Lithium ion batteries; Multi-Scale Tailoring
Citation
Materials and Design, v.227
Journal Title
Materials and Design
Volume
227
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/69509
DOI
10.1016/j.matdes.2023.111695
ISSN
0264-1275
1873-4197
Abstract
The performance of lithium-ion batteries is highly dependent on the morphology of the grain and structure of the electrode, which can be optimized for either high power or high energy. Despite the progress in all-solid-state batteries, the behavior of densification and coarsening has not yet been investigated on cathode. Herein, we investigated the strategies how to manipulate Li-ion diffusion at the different dimensions of micro- to macro level, facilitating the diffusion as tailoring the multi-scale path from densification to coarsening. First, the influence of microstructure on tortuosity and diffusivity was studied to understand the effect of sintering. Increased sintering time was expected to deteriorate electrochemical properties owing to lower diffusivity, and higher tortuosity. Second, the grain growth and densification behavior were studied in conjunction with the critical temperature for multi-scale tailoring without significant thermal degradation. At longer sintering times, densification was sluggish and had a monotonous increment of 2.5 %/h. However, the grain sizes greatly increased to 8.37 μm, leading isolated pores breaking. Finally, the tailored diffusivity and tortuosity were compared with the calculated results to understand intra- and inter-diffusion. Our finding provides clues to facilitate the diffusion of Li-ion by controlled densification and coarsening behavior in highly densified electrode. © 2023 The Authors
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Moon, Jang Hyuk
공과대학 (에너지시스템 공학부)
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