High capacity graphite-like calcium boridecarbides as a novel anode active material for lithium-ion batteries
Graphite-like Ca 0.6 B 1.2 C 4.8 is reported as a novel anode active material for lithium-ion batteries. Its original specific capacity was 552 mA h g −1 , and it was increased to 648 mA h g −1 , which is 1.7 times higher than that of graphite, by preliminary extraction of a portion of its calcium a...
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Veröffentlicht in: | Sustainable energy & fuels 2019-07, Vol.3 (8), p.1929-1936 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Graphite-like Ca
0.6
B
1.2
C
4.8
is reported as a novel anode active material for lithium-ion batteries. Its original specific capacity was 552 mA h g
−1
, and it was increased to 648 mA h g
−1
, which is 1.7 times higher than that of graphite, by preliminary extraction of a portion of its calcium atoms. The average lithium deintercalation potential was 1.16 V
vs.
Li/Li
+
, which is one of the lowest-ever potential values among high capacity carbon-based materials studied so far. We also reveal its unique Li intercalation/deintercalation behavior coincident with a 7% change in the boron-doped graphene interlayer distance while keeping its ordered layer structure. This is the first development of a high capacity and low potential carbon based material which is capable of being prepared by one-pot heat treatment from graphite showing graphite-like reversible structural changes upon Li intercalation/deintercalation.
Graphite-like Ca
0.6
B
1.2
C
4.8
is reported as a novel anode active material for lithium-ion batteries. |
---|---|
ISSN: | 2398-4902 2398-4902 |
DOI: | 10.1039/c9se00061e |