1967Journal of the Chemical Society A Inorganic Physical TheoreticalRequires access

The preparation and reactions of trihaolgeno(alkanonitrile)bis(triphenylphosphine)rhenium(III) complexes

G. Rouschias, G. Wilkinson

Open publisher page 112 citations

Abstract

The monomeric rhenium(III) complexes, ReX3(RCN)(PPh3)2(R = alkyl; X = Cl or Br), have been prepared in high yield by heating trans-ReOX3(PPh3)2 with triphenylphosphine and an alkanonitrile; other monomeric Re(III) complexes may be obtained from them by ligand substitution, while aerial oxidation gives ReOCl3(PPh3O)PPh3. The nitrile complexes are oxidised rapidly by halogenated compounds of the type R′CY3(R′= any group; Y = Cl or Br) to ReX3Y(PPh3)2 or ReX2Y2(PPh3)2. The properties and structures of the new compounds and the mechanisms of the reactions are discussed.

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What this paper is about

The monomeric rhenium(III) complexes, ReX3(RCN)(PPh3)2(R = alkyl; X = Cl or Br), have been prepared in high yield by heating trans-ReOX3(PPh3)2 with triphenylphosphine and an alkanonitrile; other monomeric Re(III) complexes may be obtained from them by ligand substitution, while aerial oxidation gives ReOCl3(PPh3O)PPh3. The nitrile complexes are oxidised rapidly by halogenated compounds of the type R′CY3(R′= any group; Y = Cl or Br) to ReX3Y(PPh3)2 or ReX2Y2(PPh3)2. The properties and structures of the new compounds and the mechanisms of the reactions are discussed.

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Available abstract

The monomeric rhenium(III) complexes, ReX3(RCN)(PPh3)2(R = alkyl; X = Cl or Br), have been prepared in high yield by heating trans-ReOX3(PPh3)2 with triphenylphosphine and an alkanonitrile; other monomeric Re(III) complexes may be obtained from them by ligand substitution, while aerial oxidation gives ReOCl3(PPh3O)PPh3. The nitrile complexes are oxidised rapidly by halogenated compounds of the type R′CY3(R′= any group; Y = Cl or Br) to ReX3Y(PPh3)2 or ReX2Y2(PPh3)2. The properties and structures of the new compounds and the mechanisms of the reactions are discussed.

Key concepts: Rhenium, Triphenylphosphine, Chemistry, Monomer, Nitrile, Ligand (biochemistry), Alkyl, Yield (engineering)

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