| Article ID | Journal | Published Year | Pages | File Type | 
|---|---|---|---|---|
| 7836380 | Applied Surface Science | 2018 | 21 Pages | 
Abstract
												Silicon is one of the most promising candidates for next-generation anode of Lithium-ion batteries. However, poor electrical conductivity and large volume change during alloying/dealloying hinder its practical use. Here we reported a three-dimensional (3D) nitrogen and sulfur codoped graphene supported silicon nanoparticles composite (SN-G/Si) through one-step hydrothermal self-assembly. The obtained SN-G/Si was investigated in term of instrumental characterizations and electrochemical properties. The results show that SN-G/Si as a freestanding anode in LIBs delivers a reversible capacity of 2020 mAh gâ1 after 100 cycles with coulombic efficiency of nearly 97%. The excellent electrochemical performance is associated with the unique structure and the synergistic effect of SN-G/Si, in which SN-G provides volume buffer for nano Si as the flexible loader, short paths/fast channels for electron/Li ion transport as porous skeleton, and low charge-transfer resistance.
											Related Topics
												
													Physical Sciences and Engineering
													Chemistry
													Physical and Theoretical Chemistry
												
											Authors
												Ruihong Li, Junli Li, Kaiyu Qi, Xin Ge, Qiwei Zhang, Bangwen Zhang, 
											