Photo‐ and Electrochemical Properties of a CO2 Reducing Ruthenium–Rhenium Quaterpyridine‐Based Catalyst
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| Publication date | 03-2018 |
| Journal | ChemPhotoChem |
| Volume | Issue number | 2 | 3 |
| Pages (from-to) | 323-331 |
| Number of pages | 9 |
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| Abstract |
The bridging ligand 2,2′,5′,3′′,6′′,2′′′‐quaterpyridine was utilised to tether [(bpy)2Ru]2+ and [Re(CO)3Cl] subunits for the purpose of photocatalytic CO2 reduction. The photophysics and electrochemistry of the complex and associated mononuclear species are reported herein, in addition to photocatalytic, picosecond time‐resolved infrared and computational studies. Photophysical, time‐resolved IR, and electrochemical data together with quantum chemical calculations indicate weak communication between the two metal centres. As a result of the electron‐withdrawing effect of the ligand on both the Ru and Re subunits, the reducing power of the photosensitiser and catalytic unit were significantly attenuated relative to the intermolecular approach utilising [(bpy)3Ru]2+ and (bpy)Re(CO)3Cl.
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| Document type | Article |
| Note | In special issue: Artificial Photosynthesis. With supplementary file. |
| Language | English |
| Published at | https://doi.org/10.1002/cptc.201700197 |
| Downloads |
Frayne_et_al-2018-ChemPhotoChem
(Final published version)
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