4.8 Article

New Insights into the High-Performance Black Phosphorus Anode for Lithium-Ion Batteries

期刊

ADVANCED MATERIALS
卷 33, 期 35, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202101259

关键词

black phosphorus anodes; lithium-ion batteries; mechanism study; operando analyses; X-ray absorption spectroscopy (XAS); X-ray emission spectroscopy (XES); X-ray diffraction (XRD)

资金

  1. Nature Sciences and Engineering Research Council of Canada (NSERC)
  2. Canada Research Chair Program
  3. Canada Foundation for Innovation (CFI)
  4. 3M Canada
  5. Ontario Research Fund
  6. Canada Light Source (CLS) at the University of Saskatchewan
  7. University of Western Ontario
  8. NRC
  9. CHIR
  10. University of Saskatchewan
  11. China Scholarship Council (CSC)
  12. CLSI Graduate and Post-Doctoral Student Travel Support Program
  13. DOE Office of Science [DE-AC02-06CH11357]
  14. Tianjin Normal University

向作者/读者索取更多资源

The study presents a high-performance nanostructured BP/G/CNTs composite synthesized using ball-milling method, which shows a high initial capacity of 1375 mA h g(-1) at 0.15 A g(-1) and maintains 1031.7 mA h g(-1) after 450 cycles. Moreover, the electrochemical mechanism of BP anodes with three-step lithiation and delithiation is experimentally revealed for the first time, along with evidence of an open-circuit relaxation effect of the electrode.
Black phosphorus (BP) is a promising anode material in lithium-ion batteries (LIBs) owing to its high electrical conductivity and capacity. However, the huge volume change of BP during cycling induces rapid capacity fading. In addition, the unclear electrochemical mechanism of BP hinders the development of rational designs and preparation of high-performance BP-based anodes. Here, a high-performance nanostructured BP-graphite-carbon nanotubes composite (BP/G/CNTs) synthesized using ball-milling method is reported. The BP/G/CNTs anode delivers a high initial capacity of 1375 mA h g(-1) at 0.15 A g(-1) and maintains 1031.7 mA h g(-1) after 450 cycles. Excellent high-rate performance is demonstrated with a capacity of 508.1 mA h g(-1) after 3000 cycles at 2 A g(-1). Moreover, for the first time, direct evidence is provided experimentally to present the electrochemical mechanism of BP anodes with three-step lithiation and delithiation using ex situ X-ray diffraction (XRD), ex situ X-ray absorption spectroscopy (XAS), ex situ X-ray emission spectroscopy, operando XRD, and operando XAS, which reveal the formation of Li3P7, LiP, and Li3P. Furthermore, the study indicates an open-circuit relaxation effect of the electrode with ex situ and operando XAS analyses.

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