Enhancing the electrochemical performances of a tellurium-based cathode for a high-volumetric capacity Li battery via a high-energy ball mill with sulfur edge-functionalized carbon

被引:25
作者
Lee, Seungmin [1 ]
Choi, Hongsuk [1 ]
Eom, KwangSup [1 ]
机构
[1] GIST, SMSE, 123 Cheomdangwagi Ro, Gwangju 61005, South Korea
基金
新加坡国家研究基金会;
关键词
Lithium battery; High-energy ball mill; Tellurium-carbon composites; Sulfur edge-functionalized carbon; Spontaneous carbon coating; Te impregnation and growth; GRAPHENE NANOPLATELETS; FIBER CLOTH; LONG-LIFE; IN-SITU; LITHIUM; ELECTRODE; NANORODS; COMPOSITES; NANOTUBES; NANOWIRES;
D O I
10.1016/j.jpowsour.2019.05.002
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
Tellurium (Te) is a promising material for large-scale energy storage systems since it has the highest electrical conductivity among chalcogen-based cathodes, including sulfur and selenium, and a high volumetric capacity. In this work, we introduce a new compositing method for Te and carbon using a high-energy ball mill (HEBM). In particular, when functionalizing the edges of carbon with a small amount of sulfur (S), the spontaneous impregnation of nanoscale Te particles into carbon is facilitated. To study the mechanism of effective impregnation, three types of chalcogen/carbon cathodes are prepared by the HEBM method: (i) sulfur/carbon (S/C), (ii) tellurium/C (Te/C), and (iii) Te/sulfur edge-functionalized C (Te/Sef-C). Among these, Te/Sef-C shows the highest average volumetric capacity (2275 mAh cm(-3)) and the smallest capacity decrement (similar to 5.7 mAh cm(-3) per cycle), with a high Coulombic efficiency of 99.1% during 250 cycles. This enhanced performance of Te/Sef-C can be attributed to a protective self-coated carbon surface layer formed by spontaneous impregnation and growth of Te nanorods surrounded with Sef-C, which improves the electrical/ionic conductivities and reduces the direct exposure of the active materials to the electrolyte.
引用
收藏
页码:112 / 119
页数:8
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