Advances in Z-scheme semiconductor photocatalysts for the photoelectrochemical applications: A review

被引:0
|
作者
Jiaxin Li [1 ]
Hao Yuan [1 ]
Wenjie Zhang [1 ]
Bingjun Jin [2 ]
Qi Feng [2 ]
Jan Huang [2 ]
Zhengbo Jiao [1 ]
机构
[1] Institute of Materials for Energy and Environment, and College of Material Science and Engineering, Qingdao University
[2] School of Applied Physics and Materials,Wuyi
关键词
D O I
暂无
中图分类号
O643.36 [催化剂]; O644.1 [光化学];
学科分类号
摘要
With continuous consumption of nonrenewable energy, solar energy has been predicted to play an essential role in meeting the energy demands and mitigating environmental issues in the future. Despite being green, clean and pollution-free energy, solar energy cannot be adopted directly as it cannot provide sufficiently high energy density to work in the absence of machinery.Thus, it is necessary to develop an effective strategy to convert and store solar energy into chemical energy to achieve social sustainable development using solar energy as the main power source. Photocatalysis, in which semiconductor photocatalysts play a key role, is one of the most promising candidates for realising the effective utilisation of sunlight in a green, low-cost and environmentally friendly method. The photocatalytic efficiency of photocatalysts is considerably influenced by their compositions. Among the various heterostructures, Z-scheme heterojunction is one of the most interesting architecture due to its outstanding performance and excellent artificial imitation of photosynthesis. Z-scheme photocatalysts have attracted considerable attention in the past few decades. Herein, we review contemporary Z-scheme systems, with a particular focus on mechanistic breakthroughs, and highlight current state-of-the-art systems. Z-type photocatalysts are classified as traditional, all-solid-state, direct Z-schemes and S-scheme photocatalysts. The morphology, characterisation and working mechanism of each type of Z-scheme are discussed in detail. Furthermore, the applications of Z-scheme in photoelectrochemical water splitting, nitrogen fixation, pollutant degradation and carbon dioxide reduction are illustrated. Finally, we outline the main challenges and potential advances in Z-scheme architectures, as well as their future development directions.
引用
收藏
页码:294 / 331
页数:38
相关论文
共 50 条
  • [21] A review of metal oxide-based Z-scheme heterojunction photocatalysts: actualities and developments
    Yuan, Ye
    Guo, Rui-tang
    Hong, Long-fei
    Ji, Xiang-yin
    Lin, Zhi-dong
    Li, Zheng-sheng
    Pan, Wei-guo
    MATERIALS TODAY ENERGY, 2021, 21
  • [22] Advances in photocatalytic NO oxidation by Z-scheme heterojunctions
    Sharma, Jayati
    Dhiman, Pooja
    Kumar, Amit
    Sharma, Gaurav
    Environmental Research, 2024, 240
  • [23] Advances in photocatalytic NO oxidation by Z-scheme heterojunctions
    Sharma, Jayati
    Dhiman, Pooja
    Kumar, Amit
    Sharma, Gaurav
    ENVIRONMENTAL RESEARCH, 2024, 240
  • [24] Deliberate construction of direct Z-scheme photocatalysts through photodeposition
    Jiang, Wenshuai
    Qu, Dan
    An, Li
    Gao, Xiang
    Wen, Yuanjing
    Wang, Xiayan
    Sun, Zaicheng
    JOURNAL OF MATERIALS CHEMISTRY A, 2019, 7 (31) : 18348 - 18356
  • [25] Outlook on bismuth-based photocatalysts for environmental applications: A specific emphasis on Z-scheme mechanisms
    Balakumar, Srinivasan
    Mahesh, Narayanan
    Kamaraj, M.
    Shyamalagowri, S.
    Manjunathan, J.
    Murugesan, S.
    Aravind, J.
    Babu, P. Suresh
    CHEMOSPHERE, 2022, 303
  • [26] Recent advances in silver bromide-based Z-scheme photocatalytic systems for environmental and energy applications: A review
    Sharma, Sheetal
    Dutta, Vishal
    Raizada, Pankaj
    Hosseini-Bandegharaei, Ahmad
    Thakur, Vijay Kumar
    Kalia, Susheel
    Nguyen, Van-Huy
    Singh, Pardeep
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2021, 9 (01):
  • [27] INVITRO PHOTOELECTROCHEMICAL MODEL OF THE Z-SCHEME IN GREEN PLANT PHOTOSYNTHESIS
    AGOSTIANO, A
    FONG, FK
    BIOELECTROCHEMISTRY AND BIOENERGETICS, 1987, 17 (03): : 325 - 337
  • [28] Z-scheme photocatalysts for visible-light-driven pollutants degradation: A review on recent advancements
    Hassani, Aydin
    Krishnan, Sukanya
    Scaria, Jaimy
    Eghbali, Paria
    Nidheesh, P., V
    CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE, 2021, 25 (05):
  • [29] Bi2WO6-based Z-scheme photocatalysts: Principles, mechanisms and photocatalytic applications
    Khedr, Tamer M.
    Wang, Kunlei
    Kowalski, Damian
    El-Sheikh, Said M.
    Abdeldayem, Hany M.
    Ohtani, Bunsho
    Kowalska, Ewa
    JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2022, 10 (03):
  • [30] g-C3N4-Based Direct Z-Scheme Photocatalysts for Environmental Applications
    Fernandez-Catala, Javier
    Greco, Rossella
    Navlani-Garcia, Miriam
    Cao, Wei
    Berenguer-Murcia, Angel
    Cazorla-Amoros, Diego
    CATALYSTS, 2022, 12 (10)