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August 22, 2025ChemCatChem9 citations

H2 Activation and Adsorbed H Species on Pt‐Based Heterogeneous Catalysts: Fundamentals and Advances

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QWQiangqiang WuWXWeixiang XiongGYGuangxing Yang

Key Points

  • Activated H2 provides essential insights into catalytic performance and adsorbed H species, influencing various chemical processes.
  • Critical evaluation of Pt–H adducts used infrared, inelastic neutron scattering, and X-ray absorption spectroscopy for detection.
  • Experimental analysis and theoretical studies elucidate Pt–H adsorption configurations and binding energies.
  • Future research should aim to enhance catalyst designs for efficient hydrogen-involved reactions through better understanding.

Abstract

Abstract H 2 activation on heterogeneous catalysts is a fundamental step in numerous chemical processes, with the nature of adsorbed hydrogen (H) species playing a critical role in catalytic performance. In this review, we systematically categorize the formation of different H species based on the coordination environment of active metal sites, distinguishing between homolytic and heterolytic H 2 dissociation pathways. Focusing on Pt‐based heterogeneous catalysts, we provide atomic‐scale insights into adsorbed H species and Pt metal. The experimental detection of Pt─H adducts is then critically evaluated via three key spectroscopic techniques: infrared (IR) spectroscopy, inelastic neutron scattering (INS) spectroscopy, and X‐ray absorption spectroscopy (XAS), highlighting recent advancements in spectral interpretation. Complementary theoretical studies that can provide binding details of Pt─H bonds are also discussed to elucidate Pt─H adsorption configurations, binding energies, dynamic properties, and coverage‐dependent behavior. Finally, we summarize the strengths and limitations of each characterization method and provide perspectives on future research directions for understanding adsorbed H species in catalysis. This review aims to bridge the gap between experimental observations and theoretical modeling, offering a comprehensive foundation for designing more efficient catalysts in hydrogen‐involved reactions.

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Cite This Study

Wu et al. (2025) studied this question.

synapsesocial.com/papers/68af59ddad7bf08b1eade746https://doi.org/10.1002/cctc.202500902
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