Sandwich-like N-doped carbon coated SnNb2O6 nanosheets for high-rate and long-life lithium storage

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作者
Liu, Qianqian [1 ]
Du, Zhengyu [1 ]
Wang, Xiaomian [1 ]
Wang, Ruirui [1 ]
Cheng, Miao [1 ]
Hu, Jing [1 ]
Wei, Tao [1 ]
Ling, Yun [1 ]
Cui, Yuanyuan [2 ]
Wei, Yinghui [3 ]
Li, Wanfei [1 ,4 ]
Liu, Bo [1 ]
机构
[1] Suzhou Key Laboratory for Nanophotonic and Nanoelectronic Materials and Its Devices, School of Materials Science and Engineering, Suzhou University of Science and Technology, Jiangsu Province, Suzhou,215009, China
[2] Shimazu China Co LTD, Shanghai,200233, China
[3] Jiangsu Institute of Advanced Semiconductors LTD, Jiangsu Province, Suzhou,215123, China
[4] Gusu Lab Mat, Jiangsu, Suzhou,215123, China
关键词
We acknowledge the financial supports from National Natural Science Foundation of China ( 22002102; 62205231; Jiangsu Key Laboratory for Environment Functional Materials;
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摘要
A novel sandwich-like N-doped carbon coated SnNb2O6 nanosheets (SNO@NC) has been successfully fabricated through a facile calcination of SNO/polyaniline hybrid composites, which were obtained by the polymerization of aniline on SNO nanosheets. A controllable growth of NC nanolayer on the lamellar SNO surfaces endows the as-prepared SNO@NC with hierarchical sandwich-like structure, excellent conductivity and appropriate oxygen vacancies, which greatly restrains the volume expansion of SNO and improve Li ion diffusion abilities during intercalation/deintercalation reaction. As a result, the SNO@NC anode delivers a high reversible capacity of 609.2 mAh g−1 at 100 mA g−1 and 422.4 mAh g−1 at 1000 mA g−1, greatly higher than that of pure SNO (429.2 mAh g−1 at 100 mA g−1 and 166.9 mAh g−1 at 1000 mA g−1). Meanwhile, extremely long cycling stability with a low capacity decay rate (0.017% per cycle over 3000 cycles) has been achieved. This work proposes a novel strategy for engineering hierarchical pore sandwich-like SNO-based anode materials for Li ion batteries. © 2023
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