Planar and Nanostructured n-Si/Metal-Oxide/WO3/BiVO4 Monolithic Tandem Devices for Unassisted Solar Water Splitting

被引:16
作者
Ahmet, Ibbi Y. [1 ]
Berglund, Sean [1 ]
Chemseddine, Abdelkrim [1 ]
Bogdanoff, Peter [1 ]
Praeg, Raphael F. [1 ]
Abdi, Fatwa F. [1 ]
van de Krol, Roel [1 ]
机构
[1] Helmholtz Zentrum Berlin Mat & Energie GmbH, Inst Solar Fuels, Hahn Meitner Pl 1, D-14109 Berlin, Germany
来源
ADVANCED ENERGY AND SUSTAINABILITY RESEARCH | 2020年 / 1卷 / 02期
关键词
chemical vapor deposition; core-shell nanorods; heterojunctions; monolithic tandem photoanodes;
D O I
10.1002/aesr.202000037
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A series of planar and nanostructured core-shell photoanodes composed of n-Si/SiOx/TiO2/WO3/BiVO4 heterojunctions are fabricated by chemical deposition methods. Aerosol-assisted chemical vapor deposition (AA-CVD) is utilized for the large area production of planar SnO2 and TiO2 thin films and compact WO3 nanorods, with the subsequent formation of WO3/BiVO4 core-shell nanostructures via solution deposition. Optimized monolithic dual photoanodes consisting of n-Si/SiOx/TiO2/WO3/BiVO4/Fe(Ni)OOH and a Pt cathode as the hydrogen evolution catalyst, provide a combined photo-voltage capable of unassisted solar water splitting with a maximum photocurrent density of 0.3mA cm(-2) in 1.0m KBi pH 9.3 buffer solution under solar simulated AM 1.5G illumination. An average faradaic efficiency of approximate to 98% is confirmed by operando differential electrochemical mass spectroscopy (DEMS) for H-2 production. Solid-state J-V measurements of the individual n-Si/SiOx /MO (MO=WO3, BiVO4, TiO2, or SnO2) interfaces in the dark and under illumination provide valuable insights into the unfavorable electrical properties at n-Si/SiOx/WO3 or n-Si/SiOx/BiVO4 junctions. The insertion of metal oxide buffer layers, such as SnO2 and TiO2, can mitigate surface recombination at the junctions between n-Si/SiOx and WO3 or BiVO4 and strongly enhances the overall photovoltage.
引用
收藏
页数:12
相关论文
共 126 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]   Efficient BiVO4 Thin Film Photoanodes Modified with Cobalt Phosphate Catalyst and W-doping [J].
Abdi, Fatwa F. ;
Firet, Nienke ;
van de Krol, Roel .
CHEMCATCHEM, 2013, 5 (02) :490-496
[3]   Demonstration of a 50 cm2 BiVO4 tandem photoelectrochemical-photovoltaic water splitting device [J].
Ahmet, Ibbi Y. ;
Ma, Yimeng ;
Jang, Ji-Wook ;
Henschel, Tobias ;
Stannowski, Bernd ;
Lopes, Tania ;
Vilanova, Antonio ;
Mendes, Adelio ;
Abdi, Fatwa F. ;
van de Krol, Roel .
SUSTAINABLE ENERGY & FUELS, 2019, 3 (09) :2366-2379
[4]   Resistive Switching of SnO2 Thin Films on Glass Substrates [J].
Almeida, Sergio ;
Aguirre, Brandon ;
Marquez, Noel ;
McClure, John ;
Zubia, David .
INTEGRATED FERROELECTRICS, 2011, 126 :117-124
[5]   Wet-chemical treatment and electronic interface properties of silicon solar cell substrates [J].
Angermann, Heike ;
Rappich, Joerg ;
Klimm, Carola .
CENTRAL EUROPEAN JOURNAL OF PHYSICS, 2009, 7 (02) :363-370
[6]   Aerosol assisted chemical vapour deposition of WO3 thin films from tungsten hexacarbonyl and their gas sensing properties [J].
Ashraf, Sobia ;
Blackman, Christopher S. ;
Palgrave, Robert G. ;
Naisbitt, Simon C. ;
Parkin, Ivan P. .
JOURNAL OF MATERIALS CHEMISTRY, 2007, 17 (35) :3708-3713
[7]   ARTIFICIAL PHOTOSYNTHESIS - SOLAR SPLITTING OF WATER TO HYDROGEN AND OXYGEN [J].
BARD, AJ ;
FOX, MA .
ACCOUNTS OF CHEMICAL RESEARCH, 1995, 28 (03) :141-145
[8]   Gas-phase-dependent properties of SnO2 (110), (100), and (101) single-crystal surfaces:: Structure, composition, and electronic properties -: art. no. 165414 [J].
Batzill, M ;
Katsiev, K ;
Burst, JM ;
Diebold, U ;
Chaka, AM ;
Delley, B .
PHYSICAL REVIEW B, 2005, 72 (16)
[9]   A MODIFIED EXPRESSION FOR THE TUNNELLING EXPONENT IN SCHOTTKY BARRIERS [J].
BHATNAGAR, PK ;
SHARMA, KK ;
OJHA, VN ;
SRIVASTAVA, GP .
SOLAR CELLS, 1982, 5 (04) :301-304
[10]   Atomic Layer Deposition of Bismuth Vanadate Core-Shell Nanowire Photoanodes [J].
Bielinski, Ashley R. ;
Lee, Sudarat ;
Brancho, James J. ;
Esarey, Samuel L. ;
Gayle, Andrew J. ;
Kazyak, Eric ;
Sun, Kai ;
Bartlett, Bart M. ;
Dasgupta, Neil P. .
CHEMISTRY OF MATERIALS, 2019, 31 (09) :3221-3227