August 18, 2016
Journal Article

Tuning The Outward To Inward Swelling In Lithiated Silicon Nanotubes Via Surface Oxide Coating

Abstract

The electrochemically-induced mechanical degradation hinders the application of Si anodes in advanced lithium-ion batteries. Hollow structures and surface coatings have been often used to mitigate the degradation of Si-based anodes. However, the structural change and degradation mechanism during lithiation/delithiation of hollow Si structures with coatings remain unclear. Here, we combine in situ TEM experiment and chemomechanical modeling to study the electrochemically induced swelling of amorphous-Si (a-Si) nanotubes with different thicknesses of surface SiOx layers. Surprisingly, we find that no inward expansion occurs at the inner surface during lithiation of a-Si nanotubes with native oxides. In contrast, inward expansion can be induced by increasing the thickness of SiOx on the outer surface. Moreover, both the sandwich lithiation mechanism and two-stage lithiation process in a-Si nanotubes remain unchanged with the increasing thickness of surface coatings. Our chemomechanical modeling reveals the mechanical confinement effects in lithiated a-Si nanotubes with and without SiOx coatings. This work not only provides insights into the degradation of nanotube anodes with surface coatings, but also sheds light onto the optimal design of hollow anodes for high-performance lithium-ion batteries.

Revised: June 19, 2020 | Published: August 18, 2016

Citation

Wang J., H. Luo, Y. Liu, Y. He, F. Fan, Z. Zhang, and S.X. Mao, et al. 2016. Tuning The Outward To Inward Swelling In Lithiated Silicon Nanotubes Via Surface Oxide Coating. Nano Letters 16, no. 9:5815-5822. PNNL-SA-120527. doi:10.1021/acs.nanolett.6b02581