Roy, Souvik, Saha, Shriya, Doughty, Thomas , Banerjee, Dibyendu, Patel, Sunil K., Mallick, Dibyendu, Iyer, E. Siva Subramaniam and Mitra, Raja (2023) Electrocatalytic reduction of CO2 to CO by a series of organometallic Re(I)-tpy complexes. Dalton Transactions . ISSN 1477-9226
Full content URL: https://doi.org/10.1039/D3DT00441D
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Item Type: | Article |
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Item Status: | Live Archive |
Abstract
A series of organometallic Re(I)(L)(CO)3Br complexes with 4'-substituted terpyridine ligands (L) has been synthesised as electrocatalysts for CO2 reduction. The complexes' spectroscopic characterisation and computationally optimised geometry demonstrate a facial geometry around Re(I) with three cis COs and the terpyridine ligand coordinating in a bidentate mode. The effect of substitution on the 4'-position of terpyridine (Re1–5) on CO2 electroreduction was investigated and compared with a known Lehn-type catalyst, Re(I)(bpy)(CO)3Br (Re7). All complexes catalyse CO evolution in homogeneous organic media at moderate overpotentials (0.75–0.95 V) with Faradaic yields of 62–98%. The electrochemical catalytic activity was further evaluated in the presence of three Brønsted acids to demonstrate the influence of the pKa of the proton sources. The TDDFT and ultrafast transient absorption spectroscopy (TAS) studies showed combined charge transfer bands of ILCT and MLCT. Amongst the series, the Re-complex containing ferrocenyl substituted terpyridine ligand (Re5) shows an additional intra-ligand charge transfer band and was probed using UV-Vis spectroelectrochemistry.
Keywords: | CO2 reduction reaction (CO2RR), Redox reactions, Transient Absorption Spectroscopy, terpyridine ligands |
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Subjects: | F Physical Sciences > F120 Inorganic Chemistry F Physical Sciences > F100 Chemistry F Physical Sciences > F161 Organometallic Chemistry |
Divisions: | College of Science > School of Chemistry |
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ID Code: | 54651 |
Deposited On: | 06 Jun 2023 09:49 |
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