SiOC Microspheres with Homogeneous Atom Distribution for a High-Performance Li-Ion Battery.

Nano Lett

School of Materials Science and Engineering, Beihang University, Beijing100191, People's Republic of China.

Published: December 2022

The broad application of silicon-based materials is limited by large volume fluctuation, high preparation costs, and complicated preparation processes. Here, we synthesized SiOC microspheres on 3D copper foams by a simple chemical vapor deposition method using a low-cost silane coupling agent (KH560) as precursors. The SiOC microspheres are available with a large mass loading (>3 mg/cm) on collectors and can be directly used as the electrode without any binders or extra conductive agents. As a result, the as-prepared SiOC shows a high reversible capacity of ∼1240 mAh g and can be cycled more than 1900 times without decay. characterizations show that the volume change of the microspheres is only 55% and the spherical morphology as well as the 3D structure remain intact after cycles. Full-cell electrochemical tests paired with LiFePO as cathodes show 87% capacity retention after 500 cycles, better than most reported results, thus showing the commercial potential of the material.

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Source
http://dx.doi.org/10.1021/acs.nanolett.2c03699DOI Listing

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