Structural and Electrochemical Study of a 2,2′-Biphosphinine

  • Pascal Le Floch
  • , Duncan Carmichael
  • , Louis Ricard
  • , François Mathey
  • , Anny Jutand
  • , Christian Amatore

Research output: Contribution to journalArticlepeer-review

Abstract

An improved synthesis of 4,4′,5,5′-tetramethyl-2,2′,-biphosphinine from 2-bromo-4,5-dimethylphosphinine using (Ph3P)2CoCl2 as the coupling reagent is described. The coupling can also be effected in the coordination sphere of molybdenum tetracarbonyl via a bromine to lithium exchange followed by C-C bond formation with (DME)NiBr2. The recovery of the free 2,2′-biphosphinine from the Mo(CO)4 chelate thus obtained appears to be difficult. The X-ray crystal structure analysis of the 2,2′-biphosphinine at −100 °C suggests that the interaction between the two rings and the rotation barrier around the C-C bridge are weak. The complexation with Cr(CO)4 does not alter the geometry of the biphosphinine, and no electronic delocalization seems to be operative within the five-membered metallacycle. The electrochemical reduction of the tetramethylbiphosphinine is easier than that of 4,4′-dimethyl-2,2′-bipyridine. The first monoelectronic wave occurs at −1.852 V vs SCE in DMF for the phosphorus ligand as compared to −2.201 V vs SCE for the nitrogen ligand. As a consequence, the 2,2′-biphosphinine is a better ligand for electron-rich metals and is able to displace 2,2′-bipyridine from its Cr(CO)4 chelate.

Original languageEnglish
Pages (from-to)2475-2479
Number of pages5
JournalOrganometallics
Volume11
Issue number7
DOIs
Publication statusPublished - 1 Jul 1992
Externally publishedYes

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