화학공학소재연구정보센터
Inorganic Chemistry, Vol.35, No.7, 1945-1951, 1996
Effect of the NH---S Hydrogen-Bond on the Nature of Hg-S Bonding in bis(2-(Acylamino)Benzenethiolato)Mercury(II) and bis(2,6-bis(Acylamino)Benzenethiolato)Mercury(II) Complexes
2-(Acylamino)benzenethiolate complexes of Hg(II) having an intramolecular NH-S hydrogen bond, Hg[2-(pivaloylamino)benzenethiolato](2) and Hg[2,6-bis(pivaloylamino)benzenethiolato](2), were synthesized and the crystal structures were determined. The crystal structure of Hg[2-(pivaloylamino)benzenethiolato](2) . 1/2H(2)O shows the presence of two distinct conformers with different C-S-(Hg)-S-C torsion angles (81.7 and 176.6 degrees). The crystal structure of Hg[2,6-bis(pivaloylamino)benzenethiolato](2) indicates the presence of ordinary Hg-S bonds (2.335(2) and 2.342(2) Angstrom) and a straight linear coordination (S-Hg-S = 174.7(1)degrees) with a weak interaction of one of the amide CO groups toward HE(II). A weak NH-S hydrogen bond in both complexes is detected from the IR spectra in the solid state. The Hg-199 NMR spectra show the high-field shift with a decrease in the S --> Hg(II) ligand-to-metal charge transfer by the NH-S hydrogen bonding. The high-field shift by the double NH-S hydrogen bond is far greater than that by the p-substituent effect of the electron-withdrawing group (OMe, H, NHCOCH3, Cl, NO2) on the benzenethiolate ring.