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April 29, 2026Advanced Science1 citationsOpen Access

Orthogonal Design of Competing Deprotonation Process in Cation‐Mediated Ni(OH) 2 for Achieving Industrial Level Biomass Electrooxidation

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JYJunge YangZCZhengjie ChenLZLi Zhang

Key Points

  • This research aims to explore the design of Ni(OH)2 catalysts for effective biomass electrooxidation processes.
  • Designed catalysts to evaluate deprotonation processes.
  • Assessed Faraday efficiency at 1.55 V vs. RHE.
  • Conducted stability tests over 15 cycles.
  • Achieved a Faraday efficiency of 99.5% for FDCA production.
  • Maintained catalyst stability across 15 operational cycles.

Abstract

at 1.55 V vs. RHE with a high Faraday efficiency for FDCA of 99.5%, which is comparable to the best catalysts reported to date. More importantly, the catalyst is continuously stable over 15 cycles. This work provides a new strategy for designing advanced electrocatalysts to achieve selective biomass conversion under industrial-scale conditions.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/69f19f9cedf4b46824806591https://doi.org/10.1002/advs.75458
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