Silver cocatalyst-concentration dependence of overall water splitting performance over silver-inserted solid-state heterojunction photocatalyst composed of zinc rhodium oxide and bismuth vanadium oxide

被引:18
作者
Irie, Hiroshi [1 ,2 ]
Yoda, Masaomi [2 ]
Takashima, Toshihiro [1 ,2 ]
Osaki, Junya [2 ]
机构
[1] Univ Yamanashi, Clean Energy Res Ctr, 4-3-11 Takeda, Kofu, Yamanashi 4008511, Japan
[2] Univ Yamanashi, Integrated Grad Sch Med Engn & Agr Sci, Special Doctoral Program Green Energy Convers Sci, 4-3-11 Takeda, Kofu, Yamanashi 4008511, Japan
关键词
Two-step overall pure water-splitting; Zinc rhodium oxide; Bismuth vanadium oxide; Silver; Cocatalyst; Conducting layer;
D O I
10.1016/j.apcatb.2020.119744
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
We loaded silver (Ag), as a hydrogen (H-2)-evolution cocatalyst, selectively onto zinc rhodium oxide (ZnRh2O4 (ZRO)), as a H-2-evolution photocatalyst, with various amounts of the Ag cocatalyst in a heterojunction photocatalyst, Ag-inserted ZRO and bismuth vanadium oxide (Bi4V2O11(BVO), ZRO/Ag/BVO). The selective loading of the Ag cocatalyst was realized by a photodeposition method by utilizing the bandgap difference between ZRO (1.2 eV) and BVO (1.7 eV), and the amount of deposited Ag was controlled by the photodeposition time to generate Ag/ZRO/Ag/BVO with up to 4.0 wt% of Ag cocatalyst. All the prepared Ag/ZRO/Ag/BVO proceeded overall water splitting under red light irradiation at a wavelength of 700 nm, enhancing the stoichiometric evolutions of H-2 and O-2 from water. Also, the apparent quantum efficiency increased up to 1.1 wt% of Ag cocatalyst and then tended to saturate in the measurement range up to 4.0 wt%.
引用
收藏
页数:8
相关论文
共 50 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]  
Bard A.J., 1985, STANDARD POTENTIALS, Vfirst, P321
[3]   Renewable fuels from concentrated solar power: towards practical artificial photosynthesis [J].
Bonke, Shannon A. ;
Wiechen, Mathias ;
MacFarlane, Douglas R. ;
Spiccia, Leone .
ENERGY & ENVIRONMENTAL SCIENCE, 2015, 8 (09) :2791-2796
[4]   Highly efficient visible-light-driven photocatalytic hydrogen evolution by all-solid-state Z-scheme CdS/QDs/ZnIn2S4 architectures with MoS2 quantum dots as solid-state electron mediator [J].
Chen, Wei ;
Yan, Rui-Qiang ;
Zhu, Jian-Qun ;
Huang, Guo-Bo ;
Chen, Zhong .
APPLIED SURFACE SCIENCE, 2020, 504
[5]   Monolithic Photoelectrochemical Device for Direct Water Splitting with 19% Efficiency [J].
Cheng, Wen-Hui ;
Richter, Matthias H. ;
May, Matthias M. ;
Ohlmann, Jens ;
Lackner, David ;
Dimroth, Frank ;
Hannappel, Thomas ;
Atwater, Harry A. ;
Lewerenz, Hans-Joachim .
ACS ENERGY LETTERS, 2018, 3 (08) :1795-1800
[6]   Rational design of Z-scheme PtS-ZnIn2S4/WO3-MnO2 for overall photo catalytic water splitting under visible light [J].
Ding, Yao ;
Wei, Dingqiong ;
He, Rong ;
Yuan, Rusheng ;
Xie, Tengfeng ;
Li, Zhaohui .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 258
[7]   ELECTROCHEMICAL PHOTOLYSIS OF WATER AT A SEMICONDUCTOR ELECTRODE [J].
FUJISHIMA, A ;
HONDA, K .
NATURE, 1972, 238 (5358) :37-+
[8]   Silver-inserted heterojunction photocatalyst consisting of zinc rhodium oxide and silver antimony oxide for overall pure-water splitting under visible light [J].
Hara, Yoshiki ;
Takashima, Toshihiro ;
Kobayashi, Ryoya ;
Abeyrathna, Sameera ;
Ohtani, Bunsho ;
Irie, Hiroshi .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2017, 209 :663-668
[9]   Reduced Graphene Oxide as a Solid-State Electron Mediator in Z-Scheme Photocatalytic Water Splitting under Visible Light [J].
Iwase, Akihide ;
Ng, Yun Hau ;
Ishiguro, Yoshimi ;
Kudo, Akihiko ;
Amal, Rose .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2011, 133 (29) :11054-11057
[10]   A monolithic device for solar water splitting based on series interconnected thin film absorbers reaching over 10% solar-to-hydrogen efficiency [J].
Jacobsson, T. Jesper ;
Fjallstrom, Viktor ;
Sahlberg, Martin ;
Edoff, Marika ;
Edvinsson, Tomas .
ENERGY & ENVIRONMENTAL SCIENCE, 2013, 6 (12) :3676-3683