Photocatalytic water splitting for solar hydrogen generation: fundamentals and recent advancements

The expected depletion of fossil fuel reserves and its serious environmental impact have emphasised the issue of sustainable development of the human society. Solar hydrogen by photocatalytic water splitting is a promising alternative to conventional fossil fuels, which is of great potential to reli...

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Published inInternational reviews in physical chemistry Vol. 35; no. 1; pp. 1 - 36
Main Authors Yuan, Lan, Han, Chuang, Yang, Min-Quan, Xu, Yi-Jun
Format Journal Article
LanguageEnglish
Published Abingdon Taylor & Francis 02.01.2016
Taylor & Francis Ltd
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Abstract The expected depletion of fossil fuel reserves and its serious environmental impact have emphasised the issue of sustainable development of the human society. Solar hydrogen by photocatalytic water splitting is a promising alternative to conventional fossil fuels, which is of great potential to relieve the energy and environmental issues and bring an energy revolution in a clean and sustainable manner. This review is going to make a brief introduction of the basic principles of photocatalytic water splitting and the concept of different kinds of water splitting systems. Various engineering strategies for searching higher efficiency of water splitting based on the photocatalytic processes, including light harvesting, charge carriers separation and co-catalysts loading, have been outlined and discussed with selected typical examples on some elaborately designed semiconductor-based photocatalytic systems. Moreover, recent impressive progresses and advancements for photocatalytic water splitting with some promising materials are presented. Finally, this review is concluded with a summary and perspective in this hot area of research.
AbstractList The expected depletion of fossil fuel reserves and its serious environmental impact have emphasised the issue of sustainable development of the human society. Solar hydrogen by photocatalytic water splitting is a promising alternative to conventional fossil fuels, which is of great potential to relieve the energy and environmental issues and bring an energy revolution in a clean and sustainable manner. This review is going to make a brief introduction of the basic principles of photocatalytic water splitting and the concept of different kinds of water splitting systems. Various engineering strategies for searching higher efficiency of water splitting based on the photocatalytic processes, including light harvesting, charge carriers separation and co-catalysts loading, have been outlined and discussed with selected typical examples on some elaborately designed semiconductor-based photocatalytic systems. Moreover, recent impressive progresses and advancements for photocatalytic water splitting with some promising materials are presented. Finally, this review is concluded with a summary and perspective in this hot area of research.
Author Xu, Yi-Jun
Yang, Min-Quan
Yuan, Lan
Han, Chuang
Author_xml – sequence: 1
  givenname: Lan
  surname: Yuan
  fullname: Yuan, Lan
  organization: College of Chemistry, New Campus, Fuzhou University
– sequence: 2
  givenname: Chuang
  surname: Han
  fullname: Han, Chuang
  organization: College of Chemistry, New Campus, Fuzhou University
– sequence: 3
  givenname: Min-Quan
  surname: Yang
  fullname: Yang, Min-Quan
  organization: College of Chemistry, New Campus, Fuzhou University
– sequence: 4
  givenname: Yi-Jun
  surname: Xu
  fullname: Xu, Yi-Jun
  email: yjxu@fzu.edu.cn
  organization: College of Chemistry, New Campus, Fuzhou University
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Snippet The expected depletion of fossil fuel reserves and its serious environmental impact have emphasised the issue of sustainable development of the human society....
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SubjectTerms basic principles and mechanisms
charge carriers separation
cocatalysts loading
Fossil fuels
light harvesting
Photocatalysis
photocatalytic water splitting
Physical chemistry
Solar energy
water splitting systems
Title Photocatalytic water splitting for solar hydrogen generation: fundamentals and recent advancements
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