J. Connolly et al., DITHIOETHER COMPLEXES OF MANGANESE CARBONYL HALIDES - SYNTHESIS, MN-55 NMR SPECTROSCOPIC, X-RAY CRYSTALLOGRAPHIC AND ELECTROCHEMICAL STUDIES, Journal of the Chemical Society. Dalton transactions, (13), 1998, pp. 2225-2231
Reaction of [Mn(CO)(5)X] (X = Cl, Br or I) with RS(CH2)(n)SR (R = Me o
r Ph, n = 2; R = Me, n = 3) or C6H4(SMe)(2)-o yielded the neutral mang
anese(I) complexes [MnX(CO)(3) {RS(CH2)(n)SR}] or [MnX(CO)(3){C6H4(SMe
)(2)-o}] as yellow or orange solids. These compounds have been charact
erised using IR,H-1 and C-13-{H-1} NMR spectroscopy, FAB mass spectrom
etry and microanalyses. X-Ray crystallographic analyses on two example
s confirmed a fac-tricarbonyl arrangement, with the dithioether ligand
chelating. The complex [MnCl(CO)(3)(MeSCH2CH2SMe)] adopts the DL arra
ngement, while [MnBr(CO)(3)(PhSCH2CH2SPh)] is in the meso-2 form in th
e solid state. Manganese-55 NMR spectroscopic studies show that delta(
Mn-55) lies in the range +67 to -567 for these compounds, and shifts t
o low frequency according to the series X = Cl-->Br-->I. For the compo
unds involving PhSCH2CH2SPh or MeSCH2CH2CH2SMe pyramidal inversion is
rapid on the NMR timescale at 300 K, giving a single broad Mn-55 NMR p
eak. The Mn-55 NMR spectra of the compounds involving MeSCH2CH2SMe and
C6H4(SMe)(2)-o show three distinct resonances indicative of the three
NMR distinguishable invertomers, meso-1, meso-2 and DL, the populatio
n of the meso-1 form decreasing with increasing halogen size. Reaction
of [MnBr(CO)(5)] with 1 molar equivalent of MeSCH2SMe yielded the het
erobridged dinuclear complex [Mn-2(CO)(6)(mu-Br)(2)(mu-MeSCH2SMe)]. Th
e crystal structure revealed a pseudo-A-frame complex in which the two
manganese(I) octahedra edge-share via two bromides with the dithioeth
er bridging the Mn2Br2 core, giving Mn ... Mn 3.71 Angstrom.