Unbiased Photoelectrochemical Water Splitting in Z-Scheme Device Using W/Mo-Doped BiVO4 and ZnxCd1-xSe

被引:58
|
作者
Park, Hyun S. [1 ]
Lee, Heung Chan [1 ]
Leonard, Kevin C. [1 ]
Liu, Guanjie [1 ]
Bard, Allen J. [1 ]
机构
[1] Univ Texas Austin, Dept Chem & Biochem, Ctr Electrochem, Austin, TX 78712 USA
关键词
electrochemistry; photoanodes; semiconductors; water splitting; Z-scheme system; SCANNING ELECTROCHEMICAL MICROSCOPY; MIXED-METAL OXIDES; VISIBLE-LIGHT; HETEROGENEOUS PHOTOCATALYSIS; HYDROGEN-PRODUCTION; ARRAYS; PHOTOELECTROLYSIS; SEMICONDUCTORS; TEMPERATURE; OXIDATION;
D O I
10.1002/cphc.201201044
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
Photoelectrochemical water splitting to generate H-2 and O-2 using only photon energy (with no added electrical energy) has been demonstrated with dual n-type-semiconductor (or Z-scheme) systems. Here we investigated two different Z-scheme systems; one is comprised of two cells with the same metal-oxide semiconductor (W-and Mo-doped bismuth vanadate), that is, Pt-W/Mo-BiVO4, and the other is comprised of the metal oxide and a chalcogenide semiconductor, that is, Pt-W/Mo-BiVO4 and Zn0.2Cd0.8Se. The redox couples utilized in these Z-scheme configurations were I-/IO3- or S2-/S-n(2-), respectively. An electrochemical analysis of the system in terms of cell components is shown to illustrate the behavior of the complete photoelectrochemical Z-scheme water-splitting system. H-2 gas from the unbiased photolysis of water was detected using gas chromatography-mass spectroscopy and using a membrane-electrode assembly. The electrode configuration to achieve the maximum conversion efficiency from solar energy to chemical energy with the given materials and the Z-scheme is discussed. Here, the possibilities and challenges of Z-scheme unbiased photoelectrochemical water-splitting devices and the materials to achieve practical solar-fuel generation are discussed.
引用
收藏
页码:2277 / 2287
页数:11
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