Hard carbon spheres interconnected by carbon nanotubes as high-performance anodes for sodium-ion batteries

被引:83
|
作者
Suo, Liyao [1 ,2 ]
Zhu, Jiahao [1 ,2 ]
Shen, Xueyang [3 ,4 ]
Wang, Yizhou [1 ,2 ]
Han, Xiao [1 ,2 ]
Chen, Zhongqiang [1 ,2 ]
Li, Yi [1 ,2 ]
Liu, Yurong [5 ]
Wang, Dan [1 ,2 ]
Ma, Yanwen [1 ,2 ]
机构
[1] Nanjing Univ Posts & Telecommun, Sch Mat Sci & Engn, Key Lab Organ Elect & Informat Displays, Nanjing 210023, Jiangsu, Peoples R China
[2] Nanjing Univ Posts & Telecommun, Sch Mat Sci & Engn, Inst Adv Mat, Nanjing 210023, Jiangsu, Peoples R China
[3] Nanjing Univ Posts & Telecommun, Coll Elect & Opt Engn, Nanjing 210023, Jiangsu, Peoples R China
[4] Nanjing Univ Posts & Telecommun, Coll Microelect, Nanjing 210023, Jiangsu, Peoples R China
[5] Chongqing Univ Arts & Sci, Res Inst New Mat Technol, Coinnovat Ctr Micro Nano Optoelect Mat & Devices, Chongqing Key Lab Micro Nano Mat Engn & Technol, Chongqing 402160, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
HIGH-CAPACITY; LITHIUM-ION; RATE CAPABILITY; POROUS CARBON; HIGH-ENERGY; STORAGE; NANOPARTICLES; MICROSPHERES; NANOFIBERS; NANOSHEETS;
D O I
10.1016/j.carbon.2019.05.030
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Hard carbon is one of the most promising candidates of anode materials for sodium-ion batteries (SIBs). However, its insufficient electrical conductivity resulted from the non-graphitizable structure is a main obstacle to increasing its capacity and rate performance in devices. To resolve this issue, here carbon nanotubes (CNTs) connected hard carbon spheres (HCSs) composite was prepared by carbonizing CNTs supported 3-aminophenol-formaldehyde resin spheres. The seamless bonding of CNTs onto HCSs provide a long-range conductive path for electron transport and the porous skeleton allowing convenient ion diffusion. The as-prepared HCSs-CNTs composite shows a reversible capacity of 151.7 mAh g(-1) after 160 cycles when used as anode materials for SIBs. It also exhibits outstanding long-life cycling performance and rate capability, achieving a capacity of 95.1 mAh g(-1) at 1000 mA g(-1) after 500 cycles and 71.7 mAh g(-1) at 3000 mA g(-1). In particular, it is worth noticing that the capacitive behavior of HCSs-CNTs electrode makes a major contribution to the enhanced rate capability. (C) 2019 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1 / 9
页数:9
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