Hierarchical Carbon@SnS2 Aerogel with "Skeleton/Skin" Architectures as a High-Capacity, High-Rate Capability and Long Cycle Life Anode for Sodium Ion Storage

被引:54
作者
Yang, Zhiyuan [1 ]
Zhang, Peng [1 ]
Wang, Jian [1 ]
Yan, Yan [1 ]
Yu, Yang [1 ]
Wang, Qinghong [1 ]
Liu, Mingkai [1 ]
机构
[1] Jiangsu Normal Univ, Sch Chem & Mat Sci, Jiangsu Key Lab Green Synthet Chem Funct Mat, Xuzhou 221116, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
SnS2; nanoflakes; carbon nanofiber/graphene matrix; skeleton/skin morphology; sodium ion batteries; outstanding electrochemical performances; REDUCED GRAPHENE OXIDE; HIGH-PERFORMANCE ANODE; NITROGEN-DOPED CARBON; BATTERY PERFORMANCE; NANOSHEET ARRAYS; DURABLE ANODE; LITHIUM-ION; SNS2; NANOPARTICLES; COMPOSITE;
D O I
10.1021/acsami.8b14861
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Developing high-performance electrode materials with high energy and long-term cycling stability is a hot topic and of great importance for sodium ion batteries (SIBs). In this work, a highly porous carbon/tin sulfide aerogel with a "skeleton/skin" morphology (SSC@SnS2) has been developed and further used as a binder-free anode for SIBs. This SSC@ SnS2 electrode delivers a high specific capacity of 612 mA h g(-1) at 0.1 A g(-1), a good rate capability, and a long-term cycling stability up to 1000 times with an average Coulombic efficiency of similar to 99.9%. Meanwhile, this SSC@SnS2 aerogel also achieves a stable cycling performance even at a high current density up to 5.0 A g(-1). The fast-yet-stable sodium ion storage performance of the prepared SSC@SnS2 aerogel can be ascribed to the reasons that (i) the carbon nanofiber/graphene skeleton provides unimpeded pathways for the rapid transfer of electrons; (ii) thin SnS2 skin with nonaggregated morphology can provide a great number of active sites for sodium ion storage; (iii) the porous structure of the SSC@SnS2 aerogel ensures a rapid penetration of electrolyte and can further accommodate the volume expansion of active SnS2 nanoflakes; and (iv) the intermediate product of Na15Sn4 alloy contributes greatly to the sodium ion storage performance of the SSC@SnS2 aerogel. The excellent electrochemical performances coupling with the unique structural features of this SSC@SnS2 aerogel make it a promising anode candidate for SIBs.
引用
收藏
页码:37434 / 37444
页数:11
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