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April 10, 2026Chemical Communications2 citations

A metal-free azophenine-based electrocatalyst: a promising approach towards sustainable alkaline hydrogen evolution

STSandip Kumar TuduCentral Mechanical Engineering Research InstituteDKDebojyoti KunduCentral Mechanical Engineering Research InstituteSZSanjukta ZamindarCentral Mechanical Engineering Research Institute

Key Points

  • To evaluate the efficiency of a metal-free azophenine-based electrocatalyst for hydrogen evolution reactions.
  • Investigated the performance of the azophenine-based catalyst in various hydrolytic conditions.
  • Measured the overpotential and current density during water reduction experiments.
  • Conducted combined experimental and theoretical studies to analyze reaction kinetics.
  • Achieved a benchmark current density with only a 130 mV overpotential.
  • Maintained structural integrity and catalytic activity in diverse conditions.
  • Demonstrated rapid reaction kinetics and an efficient hydrogen evolution reaction (HER) pathway.

Abstract

A metal-free azophenine-based catalyst has demonstrated exceptional efficiency in water reduction, requiring a 130 mV overpotential to achieve the benchmark current density. This catalyst retains its structural integrity and catalytic activity across diverse hydrolytic conditions. Its rapid reaction kinetics and efficient HER pathway were validated by combined experimental and theoretical investigations.

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Cite This Study

Tudu et al. (2026) studied this question.

synapsesocial.com/papers/69d894ce6c1944d70ce05b53https://doi.org/10.1039/d5cc07126g
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