Negatively charged metal–organic hosts with cobalt dithiolene species: improving PET processes for light-driven proton reduction through host–guest electrostatic interactions
Negatively charged metal–organic hosts with cobalt dithiolene species: improving PET processes for light-driven proton reduction through host–guest electrostatic interactions
Negatively charged metal–organic hosts combined with cationic Ru-based photosensitizers by electrostatic interactions to improve PET processes for efficient photocatalytic proton reduction.
Monooxomolybdenum(IV) and dioxomolybdenum(VI) benzenedithiolate derivatives containing anilide moieties were synthesized and characterized by 1H NMR, UV-visible, IR, and Raman spectroscopies. These complexes exhibit very strong intramolecular NHâ¯S hydrogen bonds formed by the acidic anilide NH proton and the desired coplanar structure, resulting in significantly positive redox potential and remarkable acceleration in the reduction of Me3NO in DMF.