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Synthesis,Characterization, and Reactivity of Dyad Ruthenium‐Based Molecules for Light‐Driven Oxidation Catalysis
Authors:Dr Pau Farràs  Dr Somnath Maji  Dr Jordi Benet‐Buchholz  Prof Dr Antoni Llobet
Institution:1. Institute of Chemical Research of Catalonia (ICIQ), Av. Pa?sos Catalans 16, 43007 Tarragona (Spain), Fax: (+34)?977‐920‐228;2. Departament de Química, Universidad Autònoma de Barcelona, Cerdanyola del Vallès, 08193 Barcelona (Spain)
Abstract:Dyad molecules containing the 2,3,5,6‐tetrakis(2‐pyridyl)pyrazine (tppz) ligand with general formula (tpy)Ru(μ‐tppz)Ru(X)(L‐L)]n+ (X=Cl, CF3COO, or H2O; L‐L=2,2′‐bipyridine (bpy) or 3,5‐bis(2‐pyridyl)pyrazole (Hbpp); tpy=2,2′:6′,2“‐terpyridine) have been prepared, purified, and isolated. The complexes have been characterized by analytical and spectroscopic techniques and by X‐ray diffraction analysis for two of them. Additionally, full electrochemical characterization based on cyclic voltammetry, differential pulse voltammetry, and square wave voltammetry has been also performed. The pH dependence of the redox couples for the aqua complexes have also been studied and their corresponding Pourbaix diagrams drawn. Furthermore, their capacity to catalytically oxidize organic substrates, such as alcohols, alkenes, and sulfides, has been carried out chemically, electrochemically, and photochemically. Finally, their capacity to behave as water oxidation catalysts has also been tested.
Keywords:electrochemistry  electron transfer  oxidation  ruthenium  water splitting
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