Review of S-Scheme Heterojunction Photocatalyst for H2O2 Production

被引:67
作者
Zhang, Keyu [1 ]
Li, Yunfeng [1 ]
Yuan, Shidan [1 ]
Zhang, Luohong [1 ]
Wang, Qian [1 ]
机构
[1] Xian Polytech Univ, Coll Environm & Chem Engn, Xian Key Lab Text Chem Engn Auxiliaries, Xian 710048, Peoples R China
基金
中国国家自然科学基金;
关键词
Photocatalysis; S-scheme heterojunction; Charge transfer; EFFICIENT; PERFORMANCE; CONVERSION;
D O I
10.3866/PKU.WHXB202212010
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Rapid industrialization throughout the 20th and 21st centuries has led to the excessive consumption of fossil fuels to satisfy global energy demands. The dominant use of these fuel sources is the main cause of the ever-increasing environmental issues that greatly threaten humanity. Therefore, the development of renewable energy sources is fundamental to solving environmental issues. Solar energy has received widespread attention over the past decades as a green and sustainable energy source. Solar radiation-induced photocatalytic processes on the surface of semiconductor materials are able to convert solar energy into other energy sources for storage and further applications. However, the preparation of highly efficient and stable photocatalysts remains challenging. Recently, a new step-scheme (S-scheme) carrier migration mechanism was reported that solves the drawbacks of carrier migration in conventional heterojunction photocatalysts. The S-scheme heterojunction not only effectively solves the carrier migration problem and achieves fast separation but also preserves the powerful redox abilities and improves the catalytic performance of the photocatalytic system. To date, various S-scheme heterojunctions have been developed and employed to convert solar energy into useful chemical fuels to decrease the reliance on fossil fuels. Furthermore, these systems can also be used to degrade pollutants and reduce the harmful impact on the environment associated with the consumption of fossil fuels, including H2 evolution, pollutant degradation, and the reduction of CO2. H2O2 has been used as an effective, multipurpose, and green oxidizing agent in many applications including pollutant purification, medical disinfection, and chemical synthesis. It has also been used as a high-density energy carrier for fuel cells, with only water and oxygen produced as by-products. Photocatalytic technology provides a low-cost, environmentally friendly, and safe way to produce H2O2, requiring only solar energy, H2O, and O2 gas as raw materials. This paper reviews new S-scheme heterojunction designs for photocatalytic H2O2 production, including g-C3N4-, sulfide-, TiO2-, and ZnO-based S-scheme heterojunctions. The main principles of photocatalytic H2O2 production and the formation mechanism of the S-scheme heterojunction are also discussed. In addition, effective advanced characterization methods for S-scheme heterojunctions have been analyzed. Finally, the challenges that need to be addressed and the direction of future research are identified to provide new methods for the development of high-performance photocatalysts for H2O2 production.
引用
收藏
页数:18
相关论文
共 100 条
  • [1] Integration of 2D layered CdS/WO3 S-scheme heterojunctions and metallic Ti3C2 MXene-based Ohmic junctions for effective photocatalytic H2 generation
    Bai, Junxian
    Shen, Rongchen
    Jiang, Zhimin
    Zhang, Peng
    Li, Youji
    Li, Xin
    [J]. CHINESE JOURNAL OF CATALYSIS, 2022, 43 (02) : 359 - 369
  • [2] MOF-Derived Hollow Tubular In2O3/MIIIn2S4 (MII: Ca, Mn, and Zn) Heterostructures: Synergetic Charge-Transfer Mechanism and Excellent Photocatalytic Performance to Boost Activation of Small Atmospheric Molecules
    Bariki, Ranjit
    Das, Krishnendu
    Pradhan, Sibun Kumar
    Prusti, Banchhanidhi
    Mishra, B. G.
    [J]. ACS APPLIED ENERGY MATERIALS, 2022, 5 (09) : 11002 - 11017
  • [3] Graphdiyne-based photocatalysts for solar fuel production
    Bie, Chuanbiao
    Cheng, Bei
    Ho, Wingkei
    Li, Youji
    Macyk, Wojciech
    Ghasemi, Jahan B.
    Yu, Jiaguo
    [J]. GREEN CHEMISTRY, 2022, 24 (15) : 5739 - 5754
  • [4] Design, Fabrication, and Mechanism of Nitrogen-Doped Graphene-Based Photocatalyst
    Bie, Chuanbiao
    Yu, Huogen
    Cheng, Bei
    Ho, Wingkei
    Fan, Jiajie
    Yu, Jiaguo
    [J]. ADVANCED MATERIALS, 2021, 33 (09)
  • [5] Remarkable oxygen evolution by Co-doped ZnO nanorods and visible light
    Chen, Zheng
    Fang, Yuanxing
    Wang, Long
    Chen, Xiaoxiao
    Lin, Wei
    Wang, Xinchen
    [J]. APPLIED CATALYSIS B-ENVIRONMENTAL, 2021, 296
  • [6] Rational Design of Covalent Heptazine Frameworks with Spatially Separated Redox Centers for High-Efficiency Photocatalytic Hydrogen Peroxide Production
    Cheng, Hao
    Lv, Haifeng
    Cheng, Jun
    Wang, Lei
    Wu, Xiaojun
    Xu, Hangxun
    [J]. ADVANCED MATERIALS, 2022, 34 (07)
  • [7] Dual-Single-Atom Tailoring with Bifunctional Integration for High-Performance CO2 Photoreduction
    Cheng, Lei
    Yue, Xiaoyang
    Wang, Linxi
    Zhang, Dainan
    Zhang, Peng
    Fan, Jiajie
    Xiang, Quanjun
    [J]. ADVANCED MATERIALS, 2021, 33 (49)
  • [8] Conjugated Porous Polymers Based on BODIPY and BOPHY Dyes in Hybrid Heterojunctions for Artificial Photosynthesis
    Collado, Laura
    Naranjo, Teresa
    Gomez-Mendoza, Miguel
    Lopez-Calixto, Carmen G.
    Oropeza, Freddy E.
    Liras, Marta
    Marugan, Javier
    de la Pena O'Shea, Victor A.
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2021, 31 (51)
  • [9] Engineering an oxygen-vacancy-mediated step-scheme charge carrier dynamic coupling WO3-X/ZnFe2O4 heterojunction for robust photo-Fenton-driven levofloxacin detoxification
    Das, Kundan Kumar
    Mansingh, Sriram
    Sahoo, Dipti Prava
    Mohanty, Ritik
    Parida, Kulamani
    [J]. NEW JOURNAL OF CHEMISTRY, 2022, 46 (12) : 5785 - 5798
  • [10] 2D/2D Black Phosphorus/g-C3N4 S-Scheme Heterojunction Photocatalysts for CO2 Reduction Investigated using DFT Calculations
    Fei, Xingang
    Tan, Haiyan
    Cheng, Bei
    Zhu, Bicheng
    Zhang, Liuyang
    [J]. ACTA PHYSICO-CHIMICA SINICA, 2021, 37 (06)