Research output: Contribution to journal › Article › peer-review
Ten formally symmetric anionic OHO hydrogen bonded complexes, modeling Asp/Glu amino acid side chain interactions in nonaqueous environment (CDF 3 /CDF 2 Cl solution, 200-110 K) have been studied by 1 H, 2 H, and 13 C NMR spectroscopy, i.e. intermolecularly H-bonded homoconjugated anions of acetic, chloroacetic, dichloroacetic, trifluoroacetic, trimethylacetic, and isobutyric acids, and intramolecularly H-bonded hydrogen succinate, hydrogen rac-dimethylsuccinate, hydrogen maleate, and hydrogen phthalate. In particular, primary H/D isotope effects on the hydrogen bond proton signals as well as secondary H/D isotope effects on the 13 C signals of the carboxylic groups are reported and analyzed. We demonstrate that in most of the studied systems there is a degenerate proton tautomerism between O-H•••O - and O - •••H-O structures which is fast in the NMR time scale. The stronger is the proton donating ability of the acid, the shorter and more symmetric are the H-bonds in each tautomer of the homoconjugate. For the maleate and phthalate anions exhibiting intramolecular hydrogen bonds, evidence for symmetric single well potentials is obtained. We propose a correlation between H/D isotope effects on carboxylic carbon chemical shifts and the proton transfer coordinate, q 1 = 1 / 2 (r OH - r HO ), which allows us to estimate the desired OHO hydrogen bond geometries from the observed 13 C NMR parameters, taking into account the degenerate proton tautomerism.
Original language | English |
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Pages (from-to) | 11180-11188 |
Number of pages | 9 |
Journal | Journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment & general theory |
Volume | 116 |
Issue number | 46 |
DOIs | |
State | Published - 26 Nov 2012 |
ID: 5398027