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March 1, 2026Journal of Materials Chemistry A2 citations

HOF-Ni-GDY dual-ohmic-junction engineering: inducing photogenerated electron–hole dual channel separation for boosted hydrogen evolution

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ZZZhengyu ZhouTLTeng LiJLJin Zhon Lu

Key Points

  • The aim is to improve hydrogen evolution through enhanced electron-hole separation using Ni and HOF nanorods on GDY.
  • Integrated Ni and HOF nanorods onto GDY substrate.
  • Utilized acetylene bonds for effective substrate adsorption.
  • Explored the role of Ni in electron capture and HOF in microenvironment induction.
  • Induced dual-channel separation for photogenerated electrons and holes.
  • Achieved improved efficiency in hydrogen evolution reactions with non-noble-metal photocatalysts.

Abstract

This study integrates Ni and HOF nanorods onto GDY, utilizing its acetylene bonds for substrate adsorption, Ni for electron capture, and HOF for an induced fit microenvironment—a novel strategy for high-performance non-noble-metal photocatalysts.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/69a3d8caec16d51705d2ff45https://doi.org/10.1039/d6ta00152a
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