| Literature DB >> 26815606 |
Xin Wang1, Lanyan Huang2,3, Yan Zhao4,5, Yongguang Zhang6,7, Guofu Zhou8.
Abstract
Mesoporous ZnO nanosheets are synthesized through a room temperature solvothermal method. Transmission and scanning electronic microscopy observations indicate that as-prepared ZnO hierarchical aggregates are composed and assembled by nanosheets with a length of 1-2 μm and a thickness of 10-20 nm, and interlaced ZnO nanosheets irregularly stack together, forming a three-dimensional network. Furthermore, large mesopores are embedded in the walls of ZnO nanosheets, confirmed by Brunauer-Emmett-Teller (BET) measurement. Accordingly, the resulting ZnO anode exhibits a high and stable specific discharge capacity of 421 mAh g(-1) after 100 cycles at 200 mA g(-1) and a good rate capability. Such electrochemical performance could be attributed to the multiple synergistic effects of its mesoporous nanosheet structure, which can not only provide a large specific surface area for lithium storage, but also favor the ion transport and electrolyte diffusion.Entities:
Keywords: Lithium-ion battery; Mesoporous ZnO nanosheet; Solvothermal; ZnO anode
Year: 2016 PMID: 26815606 PMCID: PMC4729755 DOI: 10.1186/s11671-016-1244-9
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1XRD diffractogram of the prepared mesoporous ZnO nanosheet
Fig. 2a Nitrogen adsorption/desorption isotherms of the mesoporous ZnO nanosheet. b Pore size distribution by using the BJH method of the mesoporous ZnO nanosheet
Fig. 3Structural characterization of the mesoporous ZnO nanosheets. a–c SEM micrographs of the ZnO architectures. d, e HRTEM images of the ZnO nanosheet. f SAED pattern of the ZnO nanosheet
Fig. 4Schematic diagram of the possible growth mechanism for the formation of the ZnO architectures
Fig. 5The initial three CV curves of ZnO anode at a scan rate of 0.5 mV s−1
Fig. 6The galvanostatic discharge/charge profiles of the ZnO anode
Fig. 7The cycling performance of the ZnO anode for 100 cycles
Fig. 8Rate performance of the ZnO anode