Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7725670 | Journal of Power Sources | 2018 | 6 Pages |
Abstract
Due to the shorter path length and more channels for lithium ion diffusion and insertion, the two-dimensional (2D) Si nanosheets exhibit superior electrochemical performances in the field of electrochemical energy storage and conversion. Recently, various efforts have been focused on how to synthesize 2D Si nanosheets. However, there are many difficulties to achieve the larger area, high purity of 2D Si nanosheets. Herein, we developed a facile and scalable synthesis strategy to fabricate 2D Si nanosheets, utilizing the unique combination of the water-soluble NaCl particles as the sacrificial template and the hydrolyzed tetraethyl orthosilicate as the silica source, and assisting with the magnesium reduction method. Importantly, the obtained Si nanosheets have a larger area up to 10 μm2. Through combining with reduced graphene oxides (rGO), the Si nanosheets@rGO composite electrode exhibits excellent electrochemical performances. It delivers high reversible capacity about 2500â¯mAh gâ1â¯at the current density of 0.2â¯Aâ¯gâ1, as well as an excellent rate capability over 900â¯mAh gâ1â¯at 2â¯Aâ¯gâ1 even after 200 cycles.
Related Topics
Physical Sciences and Engineering
Chemistry
Electrochemistry
Authors
P.P. Wang, Y.X. Zhang, X.Y. Fan, J.X. Zhong, K. Huang,