Catalytic Generation of Oxalate through a Coupling Reaction of Two CC2 Molecules Activated on [(Ir(η5-C5Me5))2(Ir(η 4-C5Me5)CH2CN)(μ 3-S)2]

Koji Tanaka*, Yoshinori Kushi, Kiyoshi Tsuge, Kiyotsuna Toyohara, Takanori Nishioka, Kiyoshi Isobe

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

60 Scopus citations

Abstract

Electrochemical reduction of [(Ir(μ5-C5Me5))33-S)2](BPh4)2 ([Ir3S2](BPh4)2) in CO2-saturated CH3CN at - 1.30 V (vs Ag/AgCl) produced C2O42- and [(Ir(η5-C5Me5))2(Ir(η 4-C5Me5)CH2CN)(μ 3-S)2]+ ([Ir3S2CH2CN]+). The crystal structure of [Ir3S2CH2CN](BPh4) by X-ray analysis revealed that a linear CH2CN group is linked at the exo-position of a C5Me5 ligand, and the C5Me5CH2CN ligand coordinates to an Ir atom with an η4-mode. The cyclic voltammogram of [Ir3S2CH2CN]+ in CH3CN under CO2 exhibited a strong catalytic current due to the reduction Of CO2, while that of [Ir3S2]2+ did not show an interaction with CO2 in the same solvent. The reduced form of [Ir3S2CH2CN]+ works as the active species in the reduction of CO2. The IR spectra of [Ir3S2CH2CN]+ in CD3CN showed a reversible adduct formation with CO2 and also evidenced the oxalate generation through the reduced form of the CO2 adduct under the controlled potential electrolysis of the solution at -1.55 V. A coupling reaction of two CO2 molecules bonded on adjacent μ3-S and Ir in [Ir3S2CH2CN]0 is proposed for the first catalytic generation of C2O42- without accompanying CO evolution.

Original languageEnglish
Pages (from-to)120-126
Number of pages7
JournalInorganic Chemistry
Volume37
Issue number1
DOIs
StatePublished - 1998/01/12

ASJC Scopus subject areas

  • Physical and Theoretical Chemistry
  • Inorganic Chemistry

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