Visible light-induced reduction of carbon dioxide sensitized by a porphyrin-rhenium dyad metal complex on p-type semiconducting NiO as the reduction terminal end of an artificial photosynthetic system

被引:104
作者
Kou, Youki [1 ]
Nakatani, Shogo [1 ]
Sunagawa, Gen [1 ]
Tachikawa, Yasuyuki [1 ]
Masui, Dai [1 ]
Shimada, Tetsuya [1 ]
Takagi, Shinsuke [1 ]
Tryk, Donald A. [1 ]
Nabetani, Yu [1 ]
Tachibana, Hiroshi [1 ]
Inoue, Haruo [1 ]
机构
[1] Tokyo Metropolitan Univ, Ctr Artificial Photosynth, Hachioji, Tokyo 1920397, Japan
关键词
Photocatalysis; CO2; reduction; Visible light; Artificial photosynthesis; Zinc porphyrin; Rhenium complex; NiO; PHOTOCATALYTIC CO2 REDUCTION; LIGAND SUBSTITUTION-REACTIONS; HIGH TURNOVER FREQUENCY; PHOTOELECTROCHEMICAL REDUCTION; PHOTOCHEMICAL OXYGENATION; HIGHLY EFFICIENT; ELECTROCATALYTIC REDUCTION; GALLIUM-PHOSPHIDE; PHOTOELECTROCATALYTIC REDUCTION; ELECTROCHEMICAL REDUCTION;
D O I
10.1016/j.jcat.2013.03.025
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
Visible light-induced, two-electron reduction of carbon dioxide to carbon monoxide, catalyzed by a newly synthesized metal complex dyad composed of a zinc porphyrin as a light-harvesting sensitizer and a rhenium bipyridyl complex as a catalytic moiety for the reduction, was attained for the first time on the p-type semiconductor NiO without any sacrificial electron donor. The fluorescence of the dyad adsorbed on the NiO nanoparticles (20-30 nm diameter) was efficiently quenched with a very short lifetime (29 ps) compared with the intrinsic value of 1.6 ns in DMF. The radical anion of the zinc porphyrin was actually formed upon excitation of 5,10,15,20-tetra(4-carboxy)phenylporphyrinatozinc (ZnTCPP) (5) on NiO by fast electron injection from NiO to the excited ZnTCPP with a lifetime of similar to 180 ns, corresponding to the charge recombination with the hole on NiO. An electrochemical cell composed of the dyad-adsorbed NiO particle layers on an FTO cathode and platinum as a counter electrode in CO2-saturated DMF solution showed a constant cathodic photocurrent upon visible light irradiation (lambda = 420 nm) accompanied by the formation of the two:electron-reduced product (CO). The photoreduction was further enhanced by a factor of 5.5 in a system prepared by co-adsorbing ZnTCPP (5) as a light- and electron-harvesting moiety and the dyad ZnDMCPP-Re(bpy)(NHAc) (1) as a catalytic moiety on NiO, as a promising example of the design of a CO2 photoreduction system as the reduction terminal end of an artificial photosynthetic system. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:57 / 66
页数:10
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