ABINITIO CALCULATIONS OF DEUTERIUM-ISOTOPE EFFECTS ON HYDROGEN AND NITROGEN NUCLEAR MAGNETIC SHIELDING IN THE HYDRATED AMMONIUM ION

被引:32
作者
MUNCH, M
HANSEN, AE
HANSEN, PE
BOUMAN, TD
机构
[1] HC ORSTED INST,DEPT CHEM,CHEM LAB 4,DK-2100 COPENHAGEN 0,DENMARK
[2] UNIV ROSKILDE,INST LIFE SCI & CHEM,DK-4000 RUSKILDE,DENMARK
[3] SO ILLINOIS UNIV,DEPT CHEM,EDWARDSVILLE,IL 62026
来源
ACTA CHEMICA SCANDINAVICA | 1992年 / 46卷 / 11期
关键词
D O I
10.3891/acta.chem.scand.46-1065
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
H-1 and N-14 nuclear shieldings of the ammonium ion and of its mono- and tetrahydrated species in directional as well as non-directional coordinations are calculated ab initio using the localized orbital/local origin (LORG) method; counterpoise calculations are included to test for basis set superposition effects. The variation of the H-1 and N-14 shieldings with N-H distance is essentially linear in the bonding region, while the large-scale variations illustrate the transition from solvated ammonium to ammonated hydroxonium complexes. The deuterium isotope effects for these systems are evaluated in a static approximation, and for the directionally coordinated NH4+ (H2O)4 ion the computed two-bond deuterium isotope effect on H-1 correctly reproduces the unusual (i.e. negatively signed) experimental result, while the bare ion and non-directionally coordinated NH4+(H2O)4 yield positively signed effects. The decisive factor for the sign inversion is found to be the directional solvation of the deuterium atom, with an ammonium-water distance not exceeding ca. 3 angstrom, and the effect can be traced to a difference in the distance variation of the shielding perpendicular and parallel to the N-H bond. For the N-14 nuclear shielding again the results obtained for directionally coordinated NH4+(H2O)4 are in better agreement with experiments than the results obtained for the bare ion or for non-directional solvation.
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页码:1065 / 1071
页数:7
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