Carbon@SnS2 core-shell microspheres for lithium-ion battery anode materials

被引:0
作者
Guoyun Yu
Xiujuan Chen
Ansong Wang
Youliang Wang
机构
[1] Lanzhou University of Technology,State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals
[2] Lanzhou University of Technology,College of Mechano
来源
Ionics | 2018年 / 24卷
关键词
SnS; Carbon microspheres; Core-shell structure; Anode materials; Lithium-ion batteries;
D O I
暂无
中图分类号
学科分类号
摘要
A novel unique C@SnS2 core-shell structure composites consisting of well-dispersity carbon microspheres and ultrathin tin disulfide nanosheets were successfully synthesized for the first time through a simple solvothermal method. The thin SnS2 nanosheets grew onto the carbon microspheres surfaces perpendicularly and formed the close-knit porous structure. When it was used as anode materials for lithium-ion batteries, the hybrid C@SnS2 core-shell structure composites showed a remarkable electrochemical property than pure SnS2 nanosheets. Typically, the hybrid composites with SnS2 nanosheet shells and carbon microsphere’s core exhibited an excellent initial discharge capacity of 1611.6 mAh/g. Moreover, the hybrid composites exhibited capacities of 474.8–691.6 mAh/g at 100 mA/g over 50 battery cycles, while the pure SnS2 could deliver capacities of 243–517.6 mAh/g in the tests. The results indicated that the improvement of lithium storage performance of the core-shell structure C@SnS2 anode materials in terms of rate capability and cycling reversibility owing to the introduction of the smooth carbon microspheres and special designing of core-shell structure.
引用
收藏
页码:2915 / 2923
页数:8
相关论文
共 207 条
[1]  
Chu S(2012)Opportunities and challenges for a sustainable energy future Nature 488 294-303
[2]  
Majumdar A(2009)A highly ordered nanostructured carbon-sulphur cathode for lithium-sulphur batteries Nature Mat 8 500-506
[3]  
Ji XL(2010)Lithium-air battery: promise and challenges J Phys Chem Lett 1 2193-2203
[4]  
Lee KT(2017)Atomic modulation of FeCo-nitrogen-carbon bifunctional oxygen electrodes for rechargeable and flexible all-solid-state zinc-air battery Adv Ene Mater 7 1602420-11599
[5]  
Nazar LF(2017)A modified molecular framework derived highly efficient Mn-Co-Carbon cathode for a flexible Zn-air battery Chem Commun 53 11596-562
[6]  
Girishkumar G(2016)Scalable synthesis and superior performance of TiO Ionics 22 555-3100
[7]  
Mccloskey B(2013)-reduced graphene oxide composite anode for sodium-ion batteries Nano Lett 13 3093-1617
[8]  
Luntz AC(2014)Tin anode for sodium-ion batteries using natural wood fiber as a mechanical buffer and electrolyte reservoir Chem Asian J 9 1611-186
[9]  
Swanson S(2013)SnS J Power Sources 237 178-22541
[10]  
Wilcke W(2015) nanoplatelet@graphene nanocomposites as high-capacity anode materials for sodium-ion batteries ACS Appl Mat Interfaces 7 22533-4009