In:
Angewandte Chemie, Wiley, Vol. 132, No. 6 ( 2020-02-03), p. 2338-2342
Abstract:
Black phosphorus (BP) is a desirable anode material for alkali metal ion storage owing to its high electronic/ionic conductivity and theoretical capacity. In‐depth understanding of the redox reactions between BP and the alkali metal ions is key to reveal the potential and limitations of BP, and thus to guide the design of BP‐based composites for high‐performance alkali metal ion batteries. Comparative studies of the electrochemical reactions of Li + , Na + , and K + with BP were performed. Ex situ X‐ray absorption near‐edge spectroscopy combined with theoretical calculation reveal the lowest utilization of BP for K + storage than for Na + and Li + , which is ascribed to the highest formation energy and the lowest ion diffusion coefficient of the final potassiation product K 3 P, compared with Li 3 P and Na 3 P. As a result, restricting the formation of K 3 P by limiting the discharge voltage achieves a gravimetric capacity of 1300 mAh g −1 which retains at 600 mAh g −1 after 50 cycles at 0.25 A g −1 .
Type of Medium:
Online Resource
ISSN:
0044-8249
,
1521-3757
DOI:
10.1002/ange.201913129
Language:
English
Publisher:
Wiley
Publication Date:
2020
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505868-5
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514305-6
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505872-7
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1479266-7
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506259-7
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