In situ Scanning Electron Microscopy of Silicon Anode Reactions in Lithium-Ion Batteries during Charge/Discharge Processes

A comprehensive understanding of the charge/discharge behaviour of high-capacity anode active materials, e.g., Si and Li, is essential for the design and development of next-generation high-performance Li-based batteries. Here, we demonstrate the in situ scanning electron microscopy ( in situ SEM) o...

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Published inScientific reports Vol. 6; no. 1; p. 36153
Main Authors Chen, Chih-Yao, Sano, Teruki, Tsuda, Tetsuya, Ui, Koichi, Oshima, Yoshifumi, Yamagata, Masaki, Ishikawa, Masashi, Haruta, Masakazu, Doi, Takayuki, Inaba, Minoru, Kuwabata, Susumu
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 26.10.2016
Nature Publishing Group
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Summary:A comprehensive understanding of the charge/discharge behaviour of high-capacity anode active materials, e.g., Si and Li, is essential for the design and development of next-generation high-performance Li-based batteries. Here, we demonstrate the in situ scanning electron microscopy ( in situ SEM) of Si anodes in a configuration analogous to actual lithium-ion batteries (LIBs) with an ionic liquid (IL) that is expected to be a functional LIB electrolyte in the future. We discovered that variations in the morphology of Si active materials during charge/discharge processes is strongly dependent on their size and shape. Even the diffusion of atomic Li into Si materials can be visualized using a back-scattering electron imaging technique. The electrode reactions were successfully recorded as video clips. This in situ SEM technique can simultaneously provide useful data on, for example, morphological variations and elemental distributions, as well as electrochemical data.
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ISSN:2045-2322
2045-2322
DOI:10.1038/srep36153