Intramolecular redox-active ligand-to-substrate single-electron transfer: radical reactivity with a palladium(II)
Daniël L J Broere1, Bas de Bruin, Joost N H Reek
1Homogeneous, Bioinspired & Supramolecular Catalysis, van 't Hoff Institute for Molecular Sciences, University of Amsterdam , Science Park 904, 1098 XH Amsterdam, The Netherlands.
Abstract:
Coordination of the redox-active tridentate NNO ligand L(H2) to Pd(II) yields the paramagnetic iminobenzosemiquinonato complex 3. Single-electron reduction of 3 yields diamagnetic amidophenolato complex 4, capable of activating aliphatic azide 5. Experimental and computational studies suggest a redox-noninnocent pathway wherein the redox-active ligand facilitates intramolecular ligand-to-substrate single-electron transfer to generate an open-shell singlet "nitrene-substrate radical, ligand radical", enabling subsequent radical-type C-H amination reactivity with Pd(II).
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