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SiO-induced thermal instability and interplay between graphite and SiO in graphite/SiO composite anode.


ABSTRACT: Silicon monoxide (SiO), which exhibits better cyclability compared to silicon while delivering higher capacity than that of graphite, is an adequate material for the development of lithium-ion batteries (LIBs) having higher energy densities. However, incorporating silicon-based materials including SiO into stable graphite anode inevitably degrades not only cycle life but also calendar life of LIBs, while little is known about their aging mechanisms. Here, SiO-induced thermal instability of the graphite/SiO composite anode is investigated. We reveal that under thermal exposure, SiO accelerates the loss of lithium inventory and concomitantly facilitates the lithium de-intercalation from graphite. This self-discharge phenomenon, which is weakly observed in the graphite anode without SiO, is the result of preferential parasitic reaction on the SiO interface and spontaneous electron and lithium-ion migration to equilibrate the electron energy imbalance between graphite and SiO. Understanding this underlying electron-level interplay between graphite and SiO in the composite anode will contribute toward improving shelf life of SiO-containing LIBs in actual operating conditions.

SUBMITTER: Lee BS 

PROVIDER: S-EPMC9834238 | biostudies-literature | 2023 Jan

REPOSITORIES: biostudies-literature

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SiO-induced thermal instability and interplay between graphite and SiO in graphite/SiO composite anode.

Lee Ban Seok BS   Oh Sang-Hwan SH   Choi Yoon Jeong YJ   Yi Min-Jeong MJ   Kim So Hee SH   Kim Shin-Yeong SY   Sung Yung-Eun YE   Shin Sun Young SY   Lee Yongju Y   Yu Seung-Ho SH  

Nature communications 20230111 1


Silicon monoxide (SiO), which exhibits better cyclability compared to silicon while delivering higher capacity than that of graphite, is an adequate material for the development of lithium-ion batteries (LIBs) having higher energy densities. However, incorporating silicon-based materials including SiO into stable graphite anode inevitably degrades not only cycle life but also calendar life of LIBs, while little is known about their aging mechanisms. Here, SiO-induced thermal instability of the g  ...[more]

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