Issue 8, 1991

Reactivity of ruthenium and niobium trihydrides with gold fragments. Crystal structure of the hexanuclear raft cluster [Au3Nb3(µ-H)6(η-C5H4SiMe3)6]

Abstract

The reactions of [MH3(L)L′][M = Ru, L =η-C5Me5, L′= P(C6H11)31; M = Nb, L = L′=η-C5H4SiMe32; M = Nb, L = L′=η-C5H3(SiMe3)2-1,3 3] with [Au(PPh3)]PF6 produce the trinuclear clusters [L(L′)M(µ-H)2{Au(PPh3)}2]PF6[L =η-C5Me5, L′= P(C6H11)3, M = Ru 4; L = L′=η-C5H4SiMe3, M = Nb 5; L = L′=η-C5H3(SiMe3)2, M = Nb 6]. Complex 1 also reacts with one or two equivalents of [Au{N(SiMe3)2}(PPh3)] to yield respectively the neutral derivatives [(η-C5Me5){(C6H11)3P}Ru(µ-H)2Au(PPh3)]7 and [(η-C5Me5){C6H11)3P}Ru(µ-H){Au(PPh3)}2]8. The same reaction with [NbH3(η-C5H4SiMe3)2] yields the novel hexanuclear raft cluster [Au3Nb3(µ-H)6(η-C5H4SiMe3)6]9. Spectroscopic (IR and NMR) data are provided for all the compounds. Crystals of 9 are triclinic, space group P[1 with combining macron], with a= 14.927(2), b= 15.083(2), c= 15.632(2)Å, α= 103.81(1), β= 99.20(1), γ= 112.55(1)°, and Z= 2. The molecule consists of a central almost equilateral triangle of gold atoms, with each Au–Au bond bridged by a niobium atom which completes its co-ordination sphere with two η-C5H4SiMe3 groups. Additionally, each Au–Nb is bridged by one hydride ligand. The most interesting feature of this molecule is the planarity of the six metal atoms.

Article information

Article type
Paper

J. Chem. Soc., Dalton Trans., 1991, 1861-1866

Reactivity of ruthenium and niobium trihydrides with gold fragments. Crystal structure of the hexanuclear raft cluster [Au3Nb3(µ-H)6(η-C5H4SiMe3)6]

A. Antiñolo, F. A. Jalón, A. Otero, M. Fajardo, B. Chaudret, F. Lahoz and J. A. López, J. Chem. Soc., Dalton Trans., 1991, 1861 DOI: 10.1039/DT9910001861

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