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  Recent advances in cocatalyst engineering for solar-driven overall water splitting

Pelicano, C. M., & Tong, H. (2023). Recent advances in cocatalyst engineering for solar-driven overall water splitting. Applied research, e202300080. doi:10.1002/appl.202300080.

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 Creators:
Pelicano, Christian Mark1, Author           
Tong, Haijian, Author
Affiliations:
1Markus Antonietti, Kolloidchemie, Max Planck Institute of Colloids and Interfaces, Max Planck Society, ou_1863321              

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Free keywords: cocatalyst; hybridization; hydrogen; overall water splittiong; photocatalysis
 Abstract: Solar-driven overall water splitting using particulate photocatalysts represents a viable and attractive paradigm to produce H2. To achieve sustainable artificial photosynthesis, considerable effort has been devoted in enhancing the overall efficiency and stability of photocatalysts. More specifically, modifying the photocatalyst surface with suitable cocatalysts can significantly enhance its water-splitting performance. In this minireview, we describe recent advances with respect to the hybridization strategies in constructing high-performance cocatalyst/photocatalyst systems. We first discuss the fundamental concepts and principles governing the photocatalytic water splitting and the important role of cocatalysts. Subsequently, we examine the strengths and drawbacks of conventional and emerging cocatalyst loading strategies. Special consideration is given to the structure–activity relationship of cocatalysts to achieve efficient photocatalytic H2 production from pure H2O. Finally, the remaining key challenges and possible future directions in the discovery and further exploration of cocatalyst materials are also discussed. We anticipate this review will provide insights and inspire more research interest in designing high-performance cocatalysts for photocatalytic overall water splitting.

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Language(s): eng - English
 Dates: 2023-11-01
 Publication Status: Published online
 Pages: -
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1002/appl.202300080
 Degree: -

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Title: Applied research
  Abbreviation : Appl. Res.
Source Genre: Journal
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Publ. Info: Weinheim : Wiley-VCH
Pages: - Volume / Issue: - Sequence Number: e202300080 Start / End Page: - Identifier: ISSN: 2702-4288