INIFTA   05425
INSTITUTO DE INVESTIGACIONES FISICO-QUIMICAS TEORICAS Y APLICADAS
Unidad Ejecutora - UE
artículos
Título:
Electrocatalytic and Photocatalytic Conversion of CO2 to Methanol using Ruthenium Complexes with Internal Pyridyl Co-Catalysts
Autor/es:
BOSTON, DAVID; FRANCO, MILENA; R. O. LEZNA; NORMA R. DE TACCONI; FREDERICK M. MACDONNELL
Revista:
INORGANIC CHEMISTRY
Editorial:
AMER CHEMICAL SOC
Referencias:
Lugar: Washington; Año: 2014 vol. 53 p. 6544 - 6553
ISSN:
0020-1669
Resumen:
    DOI: 10.1021/ic500051m The ruthenium complexes [Ru(phen)2(ptpba)]2+ (Rua) and [Ru(phen)2(ptpbb)]2+ (Rub) are shown as electrocatalysts and photocatalysts for CO2 reduction to formate, formaldehyde and methanol.  Photochemical activity of both complexes is lost in water but is retained in 1 M H2O in DMF.  Controlled current electrolysis of a solution of Rub in CO2 saturated DMF:H2O (1 M) yields predominantly methanol over a 6 h period at ~ -0.60 V vs. Ag/AgCl, with traces of formaldehyde.  After this time, the potential jumped to -1.15 V producing both methanol and CO as products.  Irradiation of Rub in a solution of DMF:H2O (1 M) containing 0.2 M TEA (as the sacrificial reductant) yields methanol, formaldehyde, and formate.  Identification of all of the relevant redox and protonated states of the respective complexes were obtained by a combination of voltammetry and differential reflectance measurements.  Spectroelectrochemistry was particularly useful to probe the photochemical and electrochemical reduction mechanisms of both complexes as well as the complexes speciation in the absence and presence of CO2.