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Synthesis, Characterisation and Application of Iridium(III) Photosensitisers for Catalytic Water Reduction
被引:110
作者:
Gaertner, Felix
Cozzula, Daniela
[1
]
Losse, Sebastian
Boddien, Albert
Anilkumar, Gopinatan
Junge, Henrik
[2
]
Schulz, Thomas
[2
]
Marquet, Nicolas
[2
]
Spannenberg, Anke
[2
]
Gladiali, Serafino
[1
]
Beller, Matthias
[2
]
机构:
[1] Univ Sassari, Dipartimento Chim, I-07100 Sassari, Italy
[2] Leibniz Inst Katalyse EV, D-18059 Rostock, Germany
关键词:
hydrogen;
iridium;
iron;
photochemistry;
photosensitizers;
water splitting;
PHOTOCHEMICAL HYDROGEN-PRODUCTION;
PHOTOINDUCED ELECTRON-TRANSFER;
VISIBLE-LIGHT IRRADIATION;
SYM-TRIAZINE SYSTEM;
MOLECULAR CATALYSTS;
HOMOGENEOUS CATALYSIS;
AQUEOUS-SOLUTIONS;
COMPLEXES;
GENERATION;
PHOTOGENERATION;
D O I:
10.1002/chem.201100235
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
The synthesis of novel, monocationic iridium(III) photosensitisers (Ir-PSs) with the general formula [Ir-III (C boolean AND N)(2)(N boolean AND N)](+) (C boolean AND N: cyclometal-lating phenylpyridine ligand, N boolean AND N: neutral bidentate ligand) is described. The structures obtained were examined by cyclic voltammetry, UV/Vis and photoluminescence spectroscopy and X-ray analysis. All iridium complexes were tested for their ability as photosensitisers to promote homogeneously catalysed hydrogen generation from water. In the presence of [HNEt3][HFe3(CO)(11)] as a water-reduction catalyst (WRC) and triethylamine as a sacrificial reductant (SR), seven of the new iridium complexes showed activity. [Ir(6-iPr-bpy)(ppy)(2)]PF6 (bpy: 2,2'-bipyridine, ppy: 2-phenylpyridine) turned out to be the most efficient photosensitiser. This complex was also tested in combination with other WRCs based on rhodium, platinum, cobalt and manganese. In all cases, significant hydrogen evolution took place. Maximum turnover numbers of 4550 for this Ir-PS and 2770 for the Fe WRC generated in situ from [HNEt3][HFe3(CO)(11)] and tris[3,5-bis(trifluoromethyl) phenyl]phosphine was obtained. These are the highest overall efficiencies for any Ir/Fe water-reduction system reported to date. The incident photon to hydrogen yield reaches 16.4% with the best system.
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页码:6998 / 7006
页数:9
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