Issue 2, 1973

Kinetics and mechanism of the formation and isomerization of some propionyl complexes of iridium(III)

Abstract

Reactions of the complex [Ir(CO)2Cl2Et]2 with phosphorus ligands [L = PMe2Ph, PMePh2, P(OMe)3, P(OMe)2Ph, and P(OMe)Ph2] yield complexes [Ir(CO)L2Cl2(COEt)] which subsequently rearrange in solution to a more stable isomeric form. The rearrangement is inhibited by the presence of free ligand L and kinetic data support a mechanism in which a five-co-ordinate intermediate (formed by loss of L from the less stable isomer) rearranges to a second intermediate. The latter then recombines with L to produce the more stable isomer. The reason for the exclusive formation of the less stable isomer of [Ir(CO)L2Cl2(COEt)] from [Ir(CO)2Cl2Et]2 is discussed in the context of the findings for the rearrangement reaction and a mechanism is proposed which is based on the large trans-effect of the propionyl ligand.

Article information

Article type
Paper

J. Chem. Soc., Dalton Trans., 1973, 220-223

Kinetics and mechanism of the formation and isomerization of some propionyl complexes of iridium(III)

G. Wright, R. W. Clyde and R. J. Mawby, J. Chem. Soc., Dalton Trans., 1973, 220 DOI: 10.1039/DT9730000220

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