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Updated: May 18, 2026

Preparation and Reactivity of a Triphosphenium Bromide Salt: A Convenient and Stable Source of Phosphorus(I)
Published on: November 22, 2016
Synthesis, structure, and reactivity of a dimeric zinc(I) compound stabilized by a sterically demanding
1School of Chemistry, Monash University, PO Box 23, Melbourne, VIC, 3800, Australia. Andreas.Stasch@monash.edu
Abstract:
The new sterically demanding aminoiminophosphorane Ph(2)P(=NDip)(NHDip) (Dip = C(6)H(3)-2,6-iPr(2); LH, 1) has been prepared as a precursor to the potassium complex [LK] (2) and a series of heteroleptic zinc(II) complexes, namely [(LZnBr)(2)] (3), [LZnMe] (4), [LZnEt] (5), and [(LZnI)(2)] (6). The products have been obtained either through a salt metathesis route by using complex 2 and ZnBr(2) to give compound 3, through a direct reaction of ligand precursor 1 and ZnR(2) (R = Me or Et) yielding complexes 4 or 5, respectively, or through iodination of complexes 4 or 5 by using I(2) to afford compound 6. Reduction of the heteroleptic zinc(II) halide complexes 3 or 6 by using a dimeric magnesium(I) compound as a selective, stoichiometric, and soluble reducing agent afforded the new zinc(I) dimer [(LZn)(2)] (7) in good yield. Compounds 1-7 were crystallographically and spectroscopically characterized and the coordination behavior of the diiminophosphinate ligand has been investigated and compared with related CN-based ligands. An initial reactivity study has been carried out on [(LZn)(2)] (7) by using small-scale reactions and the oxidative addition of small alkyl halides across the Zn-Zn bond has been found to generate equimolar amounts of the alkyl complexes 4 or 5 and the halide complexes 3 or 6, respectively.
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