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Nanocarbon-Enhanced 2D Photoelectrodes: A New Paradigm in Photoelectrochemical Water Splitting

期刊

NANO-MICRO LETTERS
卷 13, 期 1, 页码 -

出版社

SHANGHAI JIAO TONG UNIV PRESS
DOI: 10.1007/s40820-020-00545-8

关键词

Advanced nanocarbons; Co-catalysts; 2D layered structure; Integrated photoelectrodes; Photoelectrochemical water splitting

资金

  1. National Natural Science Foundation of China [21878271, 51702284, 21878270, 21961160742]
  2. Zhejiang Provincial Natural Science Foundation of China [LR19B060002]
  3. Fundamental Research Funds for the Central Universities
  4. Startup Foundation for Hundred-Talent Program of Zhejiang University
  5. Leading Innovative and Entrepreneur Team Introduction Program of Zhejiang [2019R01006]
  6. Key Laboratory of Marine Materials and Related Technologies, CAS
  7. Zhejiang Key Laboratory of Marine Materials and Protective Technologies [2020K10]
  8. NSFC [21501138]
  9. Natural Science Foundation of Hubei Province [2019CFB556]
  10. Science Research Foundation of Wuhan Institute of Technology [K2019039]
  11. Australian Research Council (ARC)
  12. QUT Centre for Materials Science

向作者/读者索取更多资源

This study critically examines various 2D layered photoelectrode materials, discusses the correlations between the intrinsic structural properties and functions of the photoelectrodes, and analyzes strategies for assembling integrated photoelectrodes using advanced nanocarbons as co-catalysts to enhance PEC water splitting performances.
Solar-driven photoelectrochemical (PEC) water splitting systems are highly promising for converting solar energy into clean and sustainable chemical energy. In such PEC systems, an integrated photoelectrode incorporates a light harvester for absorbing solar energy, an interlayer for transporting photogenerated charge carriers, and a co-catalyst for triggering redox reactions. Thus, understanding the correlations between the intrinsic structural properties and functions of the photoelectrodes is crucial. Here we critically examine various 2D layered photoanodes/photocathodes, including graphitic carbon nitrides, transition metal dichalcogenides, layered double hydroxides, layered bismuth oxyhalide nanosheets, and MXenes, combined with advanced nanocarbons (carbon dots, carbon nanotubes, graphene, and graphdiyne) as co-catalysts to assemble integrated photoelectrodes for oxygen evolution/hydrogen evolution reactions. The fundamental principles of PEC water splitting and physicochemical properties of photoelectrodes and the associated catalytic reactions are analyzed. Elaborate strategies for the assembly of 2D photoelectrodes with nanocarbons to enhance the PEC performances are introduced. The mechanisms of interplay of 2D photoelectrodes and nanocarbon co-catalysts are further discussed. The challenges and opportunities in the field are identified to guide future research for maximizing the conversion efficiency of PEC water splitting.

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