Vanadium-doped graphitic carbon nitride for high performance lithium-sulfur batteries
To promote polysulfide conversion in lithium sulfur batteries (LSB) and alleviate the shuttle effect, we designed and fabricated a novel catalyst of vanadium-doped graphite phase carbon nitride with nitrogen defects (V@gC 3 N 4 -ND) and high vanadium loading (3.46 at%) by defect engineering and two-...
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Veröffentlicht in: | Chemical communications (Cambridge, England) England), 2023-11, Vol.59 (9), p.13458-13461 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | To promote polysulfide conversion in lithium sulfur batteries (LSB) and alleviate the shuttle effect, we designed and fabricated a novel catalyst of vanadium-doped graphite phase carbon nitride with nitrogen defects (V@gC
3
N
4
-ND) and high vanadium loading (3.46 at%) by defect engineering and two-step pyrolysis. Employing a V@gC
3
N
4
-ND modified separator, the LSB yielded capacities of 934 mA h g
−1
at 1C and 404 mA h g
−1
at 4C; the former was retained by 61% and 45% after 500 and 1000 cycles, respectively. In particular, the initial capacity of the battery reached 969 mA h g
−1
at a sulfur loading of 10.0 mg cm
−2
. This work provides a facile route to the preparation of high-loading vanadium active site catalysts with nitrogen defects in the support, which are promising for high performance LSB applications.
High load V@gC
3
N
4
-ND catalyst for lithium-sulfur batteries. |
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ISSN: | 1359-7345 1364-548X |
DOI: | 10.1039/d3cc03422d |