Issue 4, 2004

Bi- and poly-metallic cyanide-bridged complexes of the redox-active cyanomanganese nitrosyl unit [Mn(CN)(PR3)(NO)(η-C5H4Me)]

Abstract

Cationic nitrile complexes and neutral halide and cyanide complexes, with the general formula [MnL1L2(NO)(η-C5H4Me)]z, undergo one-electron oxidation at a Pt electrode in CH2Cl2. Linear plots of oxidation potential, E°′, vs.ν(NO) or the Lever parameters, EL, for L1 and L2, allow E°′ to be estimated for unknown analogues.

In the presence of TlPF6, [MnIL′(NO)(η-C5H4Me)] reacts with [Mn(CN)L(NO)(η-C5H4Me)] to give [(η5-C5H4Me)(ON)LMn(μ-CN)MnL′(NO)(η5-C5H4Me)][PF6] which undergoes two reversible one-electron oxidations; ΔE, the difference between the potentials for the two processes, differs significantly for stable cyanide-bridged linkage isomers. Novel pentametallic complexes such as [Mn{(μ-NC)Mn(CNBut)(NO)(η5-C5H4Me)}4(OEt2)][PF6]2 and [Mn{(μ-NC)Mn(CNXyl)(NO)(η5-C5H4Me)}4(NO3-O,O′)][PF6], containing a trigonal bipyramidal and a distorted octahedral Mn(II) centre, respectively, result either from slow decomposition of the binuclear cyanide-bridged species or from the reaction of anhydrous MnI2 with four equivalents of [Mn(CN)L(NO)(η5-C5H4Me)] in the presence of TlPF6.

Graphical abstract: Bi- and poly-metallic cyanide-bridged complexes of the redox-active cyanomanganese nitrosyl unit [Mn(CN)(PR3)(NO)(η-C5H4Me)]

Supplementary files

Article information

Article type
Paper
Submitted
29 Oct 2003
Accepted
17 Dec 2003
First published
22 Jan 2004

Dalton Trans., 2004, 683-694

Bi- and poly-metallic cyanide-bridged complexes of the redox-active cyanomanganese nitrosyl unit [Mn(CN)(PR3)(NO)(η-C5H4Me)]

C. J. Adams, K. M. Anderson, M. Bardaji, N. G. Connelly, N. J. Goodwin, E. Llamas-Rey, A. Guy Orpen and P. H. Rieger, Dalton Trans., 2004, 683 DOI: 10.1039/B313654J

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