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April 25, 2026Journal of Materials Chemistry A1 citations

Coupling biomass carbon engineering with phosphorus chemistry for high-performance flexible zinc-ion hybrid supercapacitors

HGHimanshu GuptaACAnusree S. ChandranNSNishant Shukla

Key Points

  • Investigate how phosphorus doping affects zinc-ion storage and supercapacitor performance using activated carbon.
  • Utilized fennel-seed derived activated carbon as a cathode material.
  • Analyzed performance in both liquid and gel electrolytes.
  • Assessed Zn-O interactions and framework polarization effects on energy storage efficiency.
  • Phosphorus-doped activated carbon significantly increased zinc-ion storage capacity.
  • Supercapacitors achieved better performance in gel electrolytes compared to liquid ones.
  • Framework polarization exhibited strong Zn-O interaction enhancement, leading to improved efficiency.

Abstract

Phosphorus doping boosts Zn-ion storage in fennel-seed derived activated carbon. As a ZIHSC cathode, it performs well in liquid and gel electrolytes, where framework polarization strengthens Zn–O interactions, improving performance significantly.

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Cite This Study

Gupta et al. (2026) studied this question.

synapsesocial.com/papers/69ec5b6088ba6daa22dace83https://doi.org/10.1039/d5ta09511e
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