Ultrathin Si Nanosheets Dispersed in Graphene Matrix Enable Stable Interface and High Rate Capability of Anode for Lithium-ion Batteries
Research output: Journal Publications and Reviews (RGC: 21, 22, 62) › 21_Publication in refereed journal › peer-review
Author(s)
Detail(s)
Original language | English |
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Article number | 2110046 |
Journal / Publication | Advanced Functional Materials |
Volume | 32 |
Issue number | 16 |
Online published | 7 Jan 2022 |
Publication status | Published - 19 Apr 2022 |
Externally published | Yes |
Link(s)
Abstract
Owing to the thinness and large lateral size, 2D Si materials exhibit very promising prospects as the high-performance anodes of lithium-ion batteries (LIBs). However, the facile synthesis of ultrathin 2D Si nanosheets (Si-NSs) and their efficient application still remain a great challenge. Herein, the fabrication of ultrathin Si-NSs with the average thickness of <2 nm is demonstrated using a unique etching-reduction protocol. After hybridizing with graphene, the as-prepared Si-NSs@rGO material delivers ultrahigh rate capability (2395.8 mAh g−1 at 0.05 A g−1 and 1727.3 mAh g−1 at 10 A g−1), long cycling lifespan (1000 cycles at 2 A g−1 with a capacity decay rate of 0.05% per cycle) and high average Coulombic efficiency (99.85% during 1000 cycles). The superior performance is attributed to the ultrathinness of Si-NSs that greatly improves the diffusivity and reversibility of Li+ ions. This work provides a strategy for fabricating a high-rate-capability anode material to meet the growing demand for high power density LIBs.
Research Area(s)
- electrostatic self-assembly, graphene, interfacial stability, rate capacity, Si nanosheets
Citation Format(s)
Ultrathin Si Nanosheets Dispersed in Graphene Matrix Enable Stable Interface and High Rate Capability of Anode for Lithium-ion Batteries. / Ren, Yang; Xiang, Lizhi; Yin, Xucai et al.
In: Advanced Functional Materials, Vol. 32, No. 16, 2110046, 19.04.2022.Research output: Journal Publications and Reviews (RGC: 21, 22, 62) › 21_Publication in refereed journal › peer-review