Distinguishing the effects of altered morphology and size on the visible light-induced water oxidation activity and photoelectrochemical performance of BaTaO2N crystal structures

被引:15
作者
Hojamberdiev, Mirabbos [1 ,2 ]
Kawashima, Kenta [2 ,3 ]
Hisatomi, Takashi [4 ]
Katayama, Masao [4 ]
Hasegawa, Masashi [1 ]
Domen, Kazunari [4 ]
Teshima, Katsuya [2 ,5 ]
机构
[1] Nagoya Univ, Dept Mat Phys, Chikusa Ku, Furo Cho, Nagoya, Aichi 4648603, Japan
[2] Shinshu Univ, Dept Environm Sci & Technol, Fac Engn, 4-17-1 Wakasato, Nagano 3808553, Japan
[3] Univ Texas Austin, Dept Chem, Austin, TX 78712 USA
[4] Univ Tokyo, Sch Engn, Dept Chem Syst Engn, Bunkyo Ku, 7-3-1 Hango, Tokyo 1138656, Japan
[5] Shinshu Univ, Ctr Energy & Environm Sci, 4-17-1 Wakasato, Nagano 3808553, Japan
关键词
LATIO2N CRYSTALS; OXYNITRIDE; GROWTH; TA3N5; PHOTOCATALYSTS; PHOTOANODE; LA;
D O I
10.1039/c8fd00170g
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
Factors, including crystallinity, morphology, size, preferential orientation, growth, composition, porosity, surface area, etc., can directly influence the optical, charge-separation, charge-transfer and water oxidation and reduction properties of particle-based photocatalysts. Therefore, these factors must be considered when designing high-performance particle-based photocatalysts for solar water splitting. Here, a flux growth method was applied to alter the morphology and size of Ba5Ta4O15 precursor oxide crystals using BaCl2, KCl, RbCl, CsCl, KCl + BaCl2 and K2SO4 at different solute concentrations, and the impact of nitridation with and without KCl flux was studied. Specifically, the effects of altered morphology and size on the visible light-induced water oxidation activity and photoelectrochemical performance of the BaTaO2N crystal structures were investigated. Upon nitridation, the samples became porous due to the lattice shrinkage caused by the replacement of 3 O2- with 2 N3- in the anionic network. The BaTaO2N crystal structures obtained by nitridation without KCl flux show higher surface areas than do their counterparts prepared by nitridation with KCl flux because of the formation of porous networks. All of the samples exhibited a high anodic photocurrent upon nitridation without KCl flux compared with those of the samples obtained by nitridation with KCl flux. These findings demonstrate that it is important to specifically engineer photocatalytic crystals to reach their maximum potential in solar water splitting.
引用
收藏
页码:227 / 241
页数:15
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