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Sulfur-Doped Carbon Nanotemplates for Sodium Metal Anodes
- Yoon, Hyeon Ji;
- Hong, Seung Ki;
- Lee, Min Eui;
- Hwang, Junyeon;
- Jin, Hyoung-Joon;
- 외 1명
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36초록
Sodium metal is a good candidate as an anode for a large-scale energy storage device because of the abundance of sodium resources and its high theoretical capacity (similar to 1166 mA h g(-1)) in a low redox potential (-2.71 V versus the standard hydrogen electrode). In this study, we report effects of sulfur doping on highly efficient macroporous catalytic carbon nanotemplates (MC-CNTs) for a metal anode. MC-CNTs resulted in reversible and stable sodium metal deposition/stripping cycling over similar to 200 cycles, with average Coulombic efficiency (CE) of similar to 99.7%. After heat treatment with elemental sulfur, the sulfur-doped MC-CNTs (S-MC-CNTs) showed significantly improved cycling performances over 2400 cycles, with average CEs of similar to 99.8%. In addition, very small nucleation overpotentials from similar to 6 to similar to 14 mV were achieved at current densities from 0.5 to 8 mA cm(-2), indicating highly efficient catalytic effects for sodium metal nucleation and high rate performances of S-MC-CNTs. These results provide insight regarding a simple but feasible strategy based on bioabundant precursors and an easy process to design a high-performance metal anode.
키워드
- 제목
- Sulfur-Doped Carbon Nanotemplates for Sodium Metal Anodes
- 저자
- Yoon, Hyeon Ji; Hong, Seung Ki; Lee, Min Eui; Hwang, Junyeon; Jin, Hyoung-Joon; Yun, Young Soo
- 발행일
- 2018-05
- 유형
- Article
- 저널명
- ACS APPLIED ENERGY MATERIALS
- 권
- 1
- 호
- 5
- 페이지
- 1846 ~ 1852