A series of axially phenoxide-bound Ni(II)-Fe(III) heterobimetallic porphyrin dimers, as a synthetic mimic of the diheme enzyme MauG, have been synthesized, which upon 4e- oxidations revealed the oxidized complex involving porphyrin π-cation radicals, an Fe(III)-coordinated phenoxyl radical, and a Ni(III) center. Redox cooperativity and the extensive π-conjugation through the bridge make the oxidized complex behave like a single supramolecular entity having unpaired electrons spread over five magnetic centers. Several isoelectronic states for the oxidized Fe(por) center, i.e., Fe(IV)(por)(PhO•) ↔ Fe(IV)(por•+)(PhO) ↔ Fe(III)(por•+)(PhO•), are possible that can be in equilibrium with low-energy barriers between them. DFT studies demonstrate spin delocalization with a dramatic change in the Fe-OTyr bond upon oxidation, which thereby becomes an active modulator of various electronic states of high-valent intermediates in diheme enzymes, such as MauG and bacterial diheme cytochrome c peroxidase (bCcP), for their function.

Electron Shuttling in High-Valent Heterobimetallic NiFe-Porphyrin Dimers: Stabilization of Ni(III) and Fe-Phenoxyl Radicals / Banerjee, Sayantani; Awasthi, Nidhi; Roychowdhury, Arya; Samanta, Deepannita; Arora, Pragya; Dutta, Nityananda; Draksharapu, Apparao; Garribba, Eugenio; Rath, Sankar Prasad. - In: INORGANIC CHEMISTRY. - ISSN 0020-1669. - 64:11(2025), pp. 5431-5441. [10.1021/acs.inorgchem.4c05206]

Electron Shuttling in High-Valent Heterobimetallic NiFe-Porphyrin Dimers: Stabilization of Ni(III) and Fe-Phenoxyl Radicals

Garribba, Eugenio;
2025-01-01

Abstract

A series of axially phenoxide-bound Ni(II)-Fe(III) heterobimetallic porphyrin dimers, as a synthetic mimic of the diheme enzyme MauG, have been synthesized, which upon 4e- oxidations revealed the oxidized complex involving porphyrin π-cation radicals, an Fe(III)-coordinated phenoxyl radical, and a Ni(III) center. Redox cooperativity and the extensive π-conjugation through the bridge make the oxidized complex behave like a single supramolecular entity having unpaired electrons spread over five magnetic centers. Several isoelectronic states for the oxidized Fe(por) center, i.e., Fe(IV)(por)(PhO•) ↔ Fe(IV)(por•+)(PhO) ↔ Fe(III)(por•+)(PhO•), are possible that can be in equilibrium with low-energy barriers between them. DFT studies demonstrate spin delocalization with a dramatic change in the Fe-OTyr bond upon oxidation, which thereby becomes an active modulator of various electronic states of high-valent intermediates in diheme enzymes, such as MauG and bacterial diheme cytochrome c peroxidase (bCcP), for their function.
2025
Electron Shuttling in High-Valent Heterobimetallic NiFe-Porphyrin Dimers: Stabilization of Ni(III) and Fe-Phenoxyl Radicals / Banerjee, Sayantani; Awasthi, Nidhi; Roychowdhury, Arya; Samanta, Deepannita; Arora, Pragya; Dutta, Nityananda; Draksharapu, Apparao; Garribba, Eugenio; Rath, Sankar Prasad. - In: INORGANIC CHEMISTRY. - ISSN 0020-1669. - 64:11(2025), pp. 5431-5441. [10.1021/acs.inorgchem.4c05206]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/368293
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