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June 4, 2026Chemical Communications0 citations

Promoting Reactant Accumulation at Solid–Liquid Interfaces through Microstrain-Defect Engineering in Overall Water Splitting

K.Krishankant .AKAlok KumarRBRohit Bisht

Key Points

  • The study aims to enhance electrochemical reactions at solid-liquid interfaces by optimizing microstrain in CoFePS.
  • Developed microstrain-engineered CoFePS from CoFeLDH.
  • Analyzed solid-liquid junctions and double-layer capacitance improvements.
  • Conducted electrochemical tests to assess performance in water splitting.
  • Success in doubling the double-layer capacitance, improving mass transfer.
  • Significant enhancement in reactant accumulation at solid-liquid interfaces, leading to better electrolysis efficiency.

Abstract

Water electrolysis is limited by interfacial mass transfer and ion interactions. Herein, a microstrain-engineered CoFePS was derived from CoFeLDH. The strategy enhanced the solid-liquid (S-L) junction, doubled the double-layer capacitance...

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Cite This Study

. et al. (2026) studied this question.

synapsesocial.com/papers/6a211689d499ed480b16f7abhttps://doi.org/10.1039/d5cc07320k
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