Synthesis and15N nuclear magnetic resonance shift tensors of bent nitrosyl complexes with N-substituted salicylideneiminate coligands; the shift tensor as a criterion of MNO bond angle
- 1 January 1992
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in J. Chem. Soc., Dalton Trans.
- No. 21,p. 3125-3131
- https://doi.org/10.1039/dt9920003125
Abstract
A series of nitrosylcobalt–Schiff base complexes [Co(NO)(asal)2][asal =N-alkyl- or N-aryl-salicylideneiminate, o-OC6H4CHNR, R = Me(msal), Et(esal), Bun(bsal), Ph(phsal) or CH2Ph(bzsal)] has been prepared. Single-crystal X-ray structure analysis of the esal derivative shows the molecule to be pyramidal with a bent apical nitrosyl group [Co–N 1.738(12), N–O 1.16(2)Å, Co–N–O 129(1)°] and a trans arrangement of the basal ligands [Co–O 1.833(6), Co–N 1.950(6)Å]. The crystals are orthorhombic, space group Pbca, a= 9.544(3), b= 17.000(3), c= 11.359(3)Å, Z= 4; the structure was refined to R= 0.059 for 822 observed reflections. The compounds are not very stable in solution, but high-resolution cross-polarisation magic-angle spinning 15N NMR spectroscopy of the [Co(15NO)(asal)2] solids, and also of [Co(15NO)(ketox)2]( ketox =o-OC6H4CMeNOH), shows large isotropic shifts (ca. 730 ppm relative to nitromethane) characteristic of bent nitrosyls. Also characteristic are the nitrogen shift tensors, with one very large component (1100–1960 ppm) reflecting the low energy of the n(N)→π*(NO) circulation. The large ranges of the shielding anisotropy Δ(540–1150 ppm) and the asymmetry parameter η(1.25–2.40) reflect the sensitivity (because of the low excitation energies) of the tensor components to relatively small changes in the geometry of the MNO group, and its relation to the ligands in the basal plane.Keywords
This publication has 21 references indexed in Scilit:
- Ligand field effects in the nuclear magnetic shielding of nitrogen-15 and cobalt-59 in bent nitrosyl complexes of cobalt(III)Inorganic Chemistry, 1987
- Nitrogen-15 n.m.r. characterization of bent and linear nitrosyl ligands in the solid state by cross-polarisation magic-angle-spinning spectroscopy of complexes of rutheniumJournal of the Chemical Society, Chemical Communications, 1985
- Nitrogen-15 and cobalt-59 NMR study of the bent nitrosyl ligand in cobalt complexesInorganic Chemistry, 1984
- Nitrogen-15 n.m.r. evidence for rapid intramolecular interconversion of linear and bent nitrosyl ligands in [RuCl(NO)2(PPh3)2](BF4), with observation of a ntrogen-14,15 equilibrium isotope effectJournal of the Chemical Society, Chemical Communications, 1984
- The nitrogen-15 n.m.r. criterion of bond angle in nitrosyl complexesJournal of the Chemical Society, Chemical Communications, 1983
- Structures of Metal NitrosylsTopics in Stereochemistry, 1981
- Bent vs. linear nitrosyl paradox. Infrared and x-ray photoelectron spectra of dichloronitrosylbis(L)cobalt(II) and crystal structure with L = diphenylmethylphosphineInorganic Chemistry, 1973
- Intramolecular redox equilibriums of cobalt-nitrosyl complexesJournal of the American Chemical Society, 1971
- The Preparation and the Co-ordination Chemistry of Cobalt Complexes with Schiff Bases Derived from Salicylaldehyde and Alkyl AminesBulletin of the Chemical Society of Japan, 1964
- 959. Complexes of tervalent cobalt with N-substituted salicylideneiminesJournal of the Chemical Society, 1960