FORMATION OF RUTHENIUM THIOLATES VIA COMPLEXES OF MOLECULAR-HYDROGEN

Citation
Ld. Field et al., FORMATION OF RUTHENIUM THIOLATES VIA COMPLEXES OF MOLECULAR-HYDROGEN, Inorganic chemistry, 33(9), 1994, pp. 2009-2017
Citations number
38
Categorie Soggetti
Chemistry Inorganic & Nuclear
Journal title
ISSN journal
00201669
Volume
33
Issue
9
Year of publication
1994
Pages
2009 - 2017
Database
ISI
SICI code
0020-1669(1994)33:9<2009:FORTVC>2.0.ZU;2-A
Abstract
RuH2(DMPE)2 [DMPE = 1,2-bis(dimethylphosphino)ethane] was synthesized by reduction of trans-RuCl2(DMPE)2 with sodium/2-propanol. Protonation of RuH2(DMPE)2 with weak organic acids such as methanol, ethanol, and thiols affords the molecular hydrogen complex trans-[RuH(eta2-H-2)(DM PE)2]+, which has an eta2-bound H-2 ligand and a sigma-bound hydride l igand. T1 measurements and the observation of a large 1J(HD) coupling in the eta2-HD isotopomer ligand support the ''nonclassical'' structur e. In the H-1 NMR spectrum of the trans-[RuH(eta2-HD)(DMPE)2]+ isotopo mer, the proton-proton coupling (across the metal center) between sigm a-H and H-1 in the eta2-HD was measured at 4.5 Hz. Between 220 and 300 K, the molecular hydrogen complex undergoes intermolecular exchange w ith the protonating reagent and all the ruthenium-bound hydrogens in t he molecular hydrogen complex undergo intramolecular exchange. The wea kly bound eta2-H-2 ligand is readily displaced by alkane- and arenethi ols to give trans-monothiolate hydrides. With thiophenol, a second sub stitution occurs to give a dithiolate complex. Crystals of trans-Ru(SP h)2- (DMPE)2 are monoclinic, space group P2(1)/a, with a = 15.03 5(3) angstrom, b = 9.881(3) angstrom, c = 19.604(4) angstrom, beta = 97.51( 2)degrees, Z = 4, and R = 0.029 [3348 reflections used with I > 2.5sig ma(I)]. The structural analysis shows that Ru is coordinated by two bi dentate phosphine and two monodentate benzenethiolate ligands in a tra ns arrangement.