Hydrogen Peroxide Production from Solar Water Oxidation

被引:241
作者
Liu, Jiali [1 ]
Zou, Yousheng [1 ]
Jin, Bingjun [2 ]
Kan, Zhang [1 ]
Park, Jong Hyeok [2 ]
机构
[1] Nanjing Univ Sci & Technol, Coll Mat Sci & Engn, Inst Optoelect & Nanomat, MIIT Key Lab Adv Display Mat & Devices, Nanjing 210094, Jiangsu, Peoples R China
[2] Yonsei Univ, Dept Chem & Biomol Engn, 50 Yonsei Ro, Seoul 120749, South Korea
关键词
GRAPHITIC CARBON NITRIDE; WO3/BIVO4; PHOTOANODE; VISIBLE-LIGHT; H2O2; PHOTOCATALYST; TIO2; PHOTOELECTRODES; MECHANISM; KINETICS; WO3;
D O I
10.1021/acsenergylett.9b02199
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
Propelled by photovoltaic cell and electrolysis research, the photoelectrochemical (PEC) water splitting system has been tuned to produce a high-value-added product and be a competitive strategy for solar-to-fuel conversion. The hydrogen peroxide (H2O2) produced by a two-electron pathway from water oxidation has recently been the focus of redesigned PEC technologies, which will be significant and important for unassisted PEC systems that use only light, water, and oxygen to simultaneously produce electricity and high-value-added H2O2 by redox coupling of H2O. Moreover, it is expected to increase the efficiency of solar water splitting through the H2O2 intermediate as it easily disproportionates to O-2 and H2O. Here, we present our prospects for an exciting new direction for solar water oxidation through H2O2 production and a mechanism for guiding material design, which will provide a considerable possibility for the revitalization of PEC water splitting.
引用
收藏
页码:3018 / 3027
页数:19
相关论文
共 75 条
[1]   Efficient solar water splitting by enhanced charge separation in a bismuth vanadate-silicon tandem photoelectrode [J].
Abdi, Fatwa F. ;
Han, Lihao ;
Smets, Arno H. M. ;
Zeman, Miro ;
Dam, Bernard ;
van de Krol, Roel .
NATURE COMMUNICATIONS, 2013, 4
[2]   Metal oxide photoanodes for solar hydrogen production [J].
Alexander, Bruce D. ;
Kulesza, Pawel J. ;
Rutkowska, Iwona ;
Solarska, Renata ;
Augustynski, Jan .
JOURNAL OF MATERIALS CHEMISTRY, 2008, 18 (20) :2298-2303
[3]   Selective and Efficient Gd-Doped BiVO4 Photoanode for Two-Electron Water Oxidation to H2O2 [J].
Baek, Ji Hyun ;
Gill, Thomas Mark ;
Abroshan, Hadi ;
Park, Sangwook ;
Shi, Xinjian ;
Norskoy, Jens ;
Jung, Hyun Suk ;
Siahrostami, Samira ;
Zheng, Xiaolin .
ACS ENERGY LETTERS, 2019, 4 (03) :720-728
[4]   Kinetics and Mechanism of Peroxymonocarbonate Formation [J].
Bakhmutova-Albert, Ekaterina V. ;
Yao, Huirong ;
Denevan, Daniel E. ;
Richardson, David E. .
INORGANIC CHEMISTRY, 2010, 49 (24) :11287-11296
[5]   ARTIFICIAL PHOTOSYNTHESIS - SOLAR SPLITTING OF WATER TO HYDROGEN AND OXYGEN [J].
BARD, AJ ;
FOX, MA .
ACCOUNTS OF CHEMICAL RESEARCH, 1995, 28 (03) :141-145
[6]  
Becquerel A.-E., 1839, CR Acad. Sci, V9, P1
[7]   Effect of copper ions on the formation of hydrogen peroxide from photocatalytic titanium dioxide particles [J].
Cai, RX ;
Kubota, Y ;
Fujishima, A .
JOURNAL OF CATALYSIS, 2003, 219 (01) :214-218
[8]   Hydrogen peroxide synthesis: An outlook beyond the anthraquinone process [J].
Campos-Martin, Jose M. ;
Blanco-Brieva, Gema ;
Fierro, Jose L. G. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2006, 45 (42) :6962-6984
[9]  
Cha HG, 2015, NAT CHEM, V7, P328, DOI [10.1038/nchem.2194, 10.1038/NCHEM.2194]
[10]   Defective Carbon-Based Materials for the Electrochemical Synthesis of Hydrogen Peroxide [J].
Chen, Shucheng ;
Chen, Zhihua ;
Siahrostami, Samira ;
Kim, Taeho Roy ;
Nordlund, Dennis ;
Sokaras, Dimosthenis ;
Nowak, Stanislaw ;
To, John W. F. ;
Higgins, Drew ;
Sinclair, Robert ;
Norskov, Jens K. ;
Jaramillo, Thomas F. ;
Bao, Zhenan .
ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2018, 6 (01) :311-317