High-performance coal-based hard carbons for sodium-ion storage enabled by Joule-heated rapid pyrolysis

  • Gong X
  • Liu Y
  • Han J
  • et al.
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Abstract

Hard carbon materials are potentially used in sodium-ion battery anodes, yet their structure is complex and not easy to control. In this paper, a Joule-heated rapid pyrolysis is proposed for the preparation of hard carbon. The selected highly volatile bituminous coal-based hard carbon is affected by the Joule-heated explosion, where a large number of volatile components are instantly released, which reorganizes the microstructure of hard carbon, increases the layer spacing of carbon microcrystals, and obtains an expanded structure. This coal-based hard carbon exhibits high sodium ion storage capacity (274 mAh g-1), high ICE (80%), and remarkable cycling stability with 80% capacity retention for more than 1000 cycles. In addition, the coal-based hard carbon anode showed good capacity retention (40%) at an extremely low temperature (-40°C).

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APA

Gong, X., Liu, Y., Han, J., & Zhi, L. (2024). High-performance coal-based hard carbons for sodium-ion storage enabled by Joule-heated rapid pyrolysis. Advances in Engineering Technology Research, 10(1), 159. https://doi.org/10.56028/aetr.10.1.159.2024

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