Highly Efficient and Robust Photocatalytic Systems for CO 2 Reduction Consisting of a Cu(I) Photosensitizer and Mn(I) Catalysts

The development of highly efficient, selective, and durable photocatalytic CO reduction systems that only use earth-abundant elements is key for both solving global warming and tackling the shortage of energy and carbon resources. Here, we successfully developed CO reduction photocatalysts using [Cu...

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Veröffentlicht in:Journal of the American Chemical Society 2018-12, Vol.140 (49), p.17241-17254
Hauptverfasser: Takeda, Hiroyuki, Kamiyama, Hiroko, Okamoto, Kouhei, Irimajiri, Mina, Mizutani, Toshihide, Koike, Kazuhide, Sekine, Akiko, Ishitani, Osamu
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Sprache:eng
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Zusammenfassung:The development of highly efficient, selective, and durable photocatalytic CO reduction systems that only use earth-abundant elements is key for both solving global warming and tackling the shortage of energy and carbon resources. Here, we successfully developed CO reduction photocatalysts using [Cu (P bph) ] (CuPS) (P bph = 4,7-diphenyl-2,9-di(diphenylphosphinotetramethylene)-1,10-phenanthroline) as a redox photosensitizer and fac-Mn(X bpy)(CO) Br (Mn(4X)) (X bpy = 4,4'-X -2,2'-bipyridine (X = -H and -OMe) or Mn(6mes) (6mes = 6,6'-(mesityl) -2,2'-bipyridne)) as the catalyst. The most efficient photocatalysis was achieved by Mn(4OMe): The total quantum yield of CO reduction products was 57%, the turnover number based on the Mn catalyst was over 1300, and the selectivity of CO reduction was 95%. Electronic and steric effects of the substituents (X) in the Mn complexes largely affected both the photocatalytic efficiency and the product selectivity. For example, the highest selectivity of CO formation was achieved by using Mn(6mes) (selectivity S = 96.6%), whereas the photocatalytic system using Mn(4H) yielded HCOOH as the main product ( S = 74.6%) with CO and H as minor products ( S = 23.7%, S = 1.7%). In these photocatalytic reactions, CuPS played its role as an efficient and very durable redox photosensitizer, while remaining stable in the reaction solution even after a turnover number of 200 had been reached (the catalyst used had a turnover number of over 1000).
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.8b10619