| Literature DB >> 28926687 |
Qidi Wang1,2, Chenglong Zhao3, Yaxiang Lu3, Yunming Li3, Yuheng Zheng3, Yuruo Qi3, Xiaohui Rong3, Liwei Jiang3, Xinguo Qi3, Yuanjun Shao3, Du Pan3, Baohua Li1, Yong-Sheng Hu3, Liquan Chen3.
Abstract
Sodium-ion batteries (NIBs), due to the advantages of low cost and relatively high safety, have attracted widespread attention all over the world, making them a promising candidate for large-scale energy storage systems. However, the inherent lower energy density to lithium-ion batteries is the issue that should be further investigated and optimized. Toward the grid-level energy storage applications, designing and discovering appropriate anode materials for NIBs are of great concern. Although many efforts on the improvements and innovations are achieved, several challenges still limit the current requirements of the large-scale application, including low energy/power densities, moderate cycle performance, and the low initial Coulombic efficiency. Advanced nanostructured strategies for anode materials can significantly improve ion or electron transport kinetic performance enhancing the electrochemical properties of battery systems. Herein, this Review intends to provide a comprehensive summary on the progress of nanostructured anode materials for NIBs, where representative examples and corresponding storage mechanisms are discussed. Meanwhile, the potential directions to obtain high-performance anode materials of NIBs are also proposed, which provide references for the further development of advanced anode materials for NIBs.Entities:
Keywords: anode materials; nanostructures; sodium-ion battery; storage mechanism
Year: 2017 PMID: 28926687 DOI: 10.1002/smll.201701835
Source DB: PubMed Journal: Small ISSN: 1613-6810 Impact factor: 13.281