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Dioxygen Activation and Pyrrole α‐Cleavage with Calix[4]pyrrolato Aluminates: Enzyme Model by Structural Constraint

Lukas M. Sigmund, Christopher Ehlert, Markus Enders, Jürgen Graf, Ganna Gryn’ova, Lutz Greb

2021Angewandte Chemie International Edition45 citationsDOIOpen Access PDF

Abstract

The present work describes the reaction of triplet dioxygen with the porphyrinogenic calix[4]pyrrolato aluminates to alkylperoxido aluminates in high selectivity. Multiconfigurational quantum chemical computations disclose the mechanism for this spin-forbidden process. Despite a negligible spin-orbit coupling constant, the intersystem crossing (ISC) is facilitated by singlet and triplet state degeneracy and spin-vibronic coupling. The formed peroxides are stable toward external substrates but undergo an unprecedented oxidative pyrrole α-cleavage by ligand aromatization/dearomatization-initiated O-O σ-bond scission. A detailed comparison of the calix[4]pyrrolato aluminates with dioxygen-related enzymology provides insights into the ISC of metal- or cofactor-free enzymes. It substantiates the importance of structural constraint and element-ligand cooperativity for the functions of aerobic life.

Topics & Concepts

Intersystem crossingChemistryPhotochemistrySinglet stateBond cleavageLigand (biochemistry)Singlet oxygenTriplet stateSupramolecular chemistryStereochemistryCatalysisCrystallographyMoleculeOxygenExcited stateCrystal structureOrganic chemistryBiochemistryPhysicsReceptorNuclear physicsPorphyrin and Phthalocyanine ChemistryMetal-Catalyzed Oxygenation MechanismsPhotosynthetic Processes and Mechanisms
Dioxygen Activation and Pyrrole α‐Cleavage with Calix[4]pyrrolato Aluminates: Enzyme Model by Structural Constraint | Litcius