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Polymorphic transition to metastable phases in hollow structured silicon anode in a Li-ions battery
期刊文章

Polymorphic transition to metastable phases in hollow structured silicon anode in a Li-ions battery

Shi-Wei Chen, Shin-An Chen, Ting-Shan Chan, Shih-Chang Weng, Yen-Fa Liao, Nozomu Hiraoka, Tsan-Yao Chen, Bor-Yuan Shew, Jin-Ming ChenChih-Hao Lee
Applied Materials Today, 卷.26, 101333
03/2022

摘要

Materials Science (all)
In contrast to previous findings, a high-temperature phase Li 4.1 Si, rather than the commercial phase Li 15 Si 4 , was observed in the hollow-structured silicon anode of a Li-ions battery after lithiation. The formation of Li 4.1 Si, as well as other lithium silicides, could be ascribed by the polymorphic transition theory that promoted the formation of a metastable phase. The phase transition began with a nucleus composed of a specific octahedral, which led to the final phases containing similar short-range ordering. Due to the formation of the Li 4.1 Si, the hollow-structured silicon anode had an ultra-high capacity that remained at 2500 mAh/g after 250 cycles. This kind of phase transition may occur not only in hollow-structured silicon nanoparticles but also in other particles with specific morphologies if the requirements for polymorphic transition are satisfied.

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