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January 17, 2026Materials0 citationsOpen Access

Ultrafast High-Temperature Synthesis of Battery-Grade Graphite Through Energy-Effective Joule Heating: A Combined Experimental and Simulation Study

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JLJie-Cong LiuQLQ LiSGSalvatore Grasso

Key Points

  • To introduce and evaluate ultrafast high-temperature graphitization (UHG) as an efficient method for synthesizing graphite.
  • Employ ultrafast high-temperature graphitization (UHG) process at temperatures up to 3400 K.
  • Utilize finite element simulations to assess energy consumption in scaled-up systems.
  • Measure cyclic capacity performance of synthesized graphite samples.
  • Achieved graphitization rates of up to 90% in under 100 seconds.
  • Demonstrated stable cyclic capacities of 350 mAh/g comparable to commercial graphite.
  • Measured energy consumption of 2.4 MJ/kg for coke to graphite conversion using UHG.

Abstract

This work introduces ultrafast high-temperature graphitization (UHG) as an effective method to synthesize graphite with significantly reduced processing times of about 100 s and reduced consumed energy, as opposed to conventional methods that require several days at 2800 K. This novel process achieves graphitization of up to 90% within a few minutes due to the accelerated kinetics occurring at temperatures as high as 3400 K. Samples processed using UHG attained stable cyclic capacities of 350 mAh/g, which is fully comparable to commercially available graphite. Finite Element Simulations were also used to calculate the energy consumption for a scaled-up configuration, and it was found that the UHG approach reaches ultra-low energy consumption, requiring only 2.4 MJ/kg for the direct conversion of coke into graphite. By minimizing the duration of high-temperature processing and employing localized heating, UHG is envisioned to mitigate some of the challenges associated with traditional Acheson furnaces that have been in use for more than a century.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/696b2672d2a12237a9349beahttps://doi.org/10.3390/ma19020348
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