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Ligand‐Enabled Disproportionation of 1,2‐Diphenylhydrazine at a P <sup>V</sup> ‐Center**

Simon B. H. Karnbrock, Christopher Golz, Ricardo A. Mata, Manuel Alcarazo

2022Angewandte Chemie International Edition23 citationsDOIOpen Access PDF

Abstract

Abstract We present herein the synthesis of a nearly square‐pyramidal chlorophosphorane supported by the tetradentate bis(amidophenolate) ligand, N,N ′‐bis(3,5‐di‐ tert ‐butyl‐2‐phenoxy)‐1,2‐phenylenediamide. After chloride abstraction the resulting phosphonium cation efficiently promotes the disproportionation of 1,2‐diphenylhydrazine to aniline and azobenzene. Mechanistic studies, spectroscopic analyses and theoretical calculations suggest that this unprecedented reactivity mode for P V ‐centres is induced by the high electrophilicity at the cationic P V ‐center, which originates from the geometry constraints imposed by the rigid pincer ligand, combined with the ability of the o ‐amidophenolate moieties to act as electron reservoir. This study illustrates the promising role of cooperativity between redox‐active ligands and phosphorus for the design of organocatalysts able to promote redox processes.

Topics & Concepts

DisproportionationPincer ligandChemistryLigand (biochemistry)ElectrophileCenter (category theory)Reactivity (psychology)PhosphoniumCationic polymerizationRedoxCooperativityMedicinal chemistryStereochemistryPhotochemistryCrystallographyPolymer chemistryCatalysisInorganic chemistryPincer movementOrganic chemistryPathologyReceptorMedicineAlternative medicineBiochemistryAsymmetric Hydrogenation and CatalysisSynthesis and Catalytic ReactionsMetal complexes synthesis and properties
Ligand‐Enabled Disproportionation of 1,2‐Diphenylhydrazine at a P <sup>V</sup> ‐Center** | Litcius