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February 13, 2026Green Chemistry2 citations

Boosting Photocatalytic Simultaneous Hydrogen Evolution and Plastic Reforming via Surface Hydroxylation over NiMoO4/CdS Heterojunction: Interfacial Microenvironment and Electronic Structure Regulation

ZHZixu HuWJWenjun JiangYZYuxin Zhang

Key Points

  • The study aims to improve hydrogen evolution efficiency through surface modifications of photocatalysts.
  • Investigated the interfacial interactions of NiMoO4/CdS heterojunctions.
  • Implemented surface hydroxylation techniques on photocatalysts.
  • Analyzed the effects on electronic structure and microenvironment.
  • Surface hydroxylation significantly boosts photocatalytic hydrogen evolution rates.
  • Enhanced interfacial interactions lead to improved overall efficiency.
  • The study identifies key mechanisms in the microenvironment affecting catalysis.

Abstract

The interfacial interaction between catalysts and substrate molecules plays a pivotal role in enhancing photocatalytic hydrogen evolution efficiency. Rational surface design and modification of photocatalysts can effectively reduce the activation...

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Cite This Study

Hu et al. (2026) studied this question.

synapsesocial.com/papers/698ebf5085a1ff6a93016b13https://doi.org/10.1039/d6gc00208k
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