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Molecular Porous Photosystems Tailored for Long‐Term Photocatalytic CO2 Reduction
Authors:Florian M Wisser  Mathis Duguet  Quentin Perrinet  Ashta C Ghosh  Marcelo Alves‐Favaro  Yorck Mohr  Chantal Lorentz  Elsje Alessandra Quadrelli  Regina Palkovits  David Farrusseng  Caroline Mellot‐Draznieks  Vincent de Waele  Jrme Canivet
Institution:Florian M. Wisser,Mathis Duguet,Quentin Perrinet,Ashta C. Ghosh,Marcelo Alves‐Favaro,Yorck Mohr,Chantal Lorentz,Elsje Alessandra Quadrelli,Regina Palkovits,David Farrusseng,Caroline Mellot‐Draznieks,Vincent de Waele,Jérôme Canivet
Abstract:The molecular‐level structuration of two full photosystems into conjugated porous organic polymers is reported. The strategy of heterogenization gives rise to photosystems which are still fully active after 4 days of continuous illumination. Those materials catalyze the carbon dioxide photoreduction driven by visible light to produce up to three grams of formate per gram of catalyst. The covalent tethering of the two active sites into a single framework is shown to play a key role in the visible light activation of the catalyst. The unprecedented long‐term efficiency arises from an optimal photoinduced electron transfer from the light harvesting moiety to the catalytic site as anticipated by quantum mechanical calculations and evidenced by in situ ultrafast time‐resolved spectroscopy.
Keywords:CO2 reduction  density functional calculations  in   situ time-resolved spectroscopy  photocatalysis  porous polymers
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