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Effects of hydration on scale factors for ab initio force constants. IV. trans and cis N-methylacetamide
Authors:Robert W Williams
Abstract:Scaled quantum mechanical force fields have been calculated using the 4-31G basis for trans and cis conformers of both isolated and water-solvated N-methylacetamide (NMA). (1) A single set of scale factors for isolated NMA yields relatively correct predictions of the shifts in vibrational frequencies between the trans and cis conformers. This is also true of a single set of scale factors for trans and cis NMA in water. The total standard deviation between measured and calculated frequencies for trans NMA in both isolated and solvated states is 6 cm?1. This implies that it should be possible to use a single set of scale factors to accurately predict the vibrational spectra of a peptide in a variety of conformational states. (2) The computationally predicted effect of hydration on force constants for the supermolecule NMA · nH2O are generally consistent with the experimentally measured effects of hydration on scale factors. These results indicate that supermolecule calculations can be useful in predicting the effects of hydration on spectra. (3) Three types of scale factors are calculated as follows: (a) first from ab initio calculations on an isolated molecule using frequencies measured from isolated molecules; (b) second from calculations on an isolated molecule using frequencies measured from water-solvated or otherwise hydrogen-bonded molecules; (c) and third from supermolecule calculations on a molecule hydrogen-bonded to water, using frequencies measured from water-solvated molecules. (4) The third type of scale factors are similar to the first type, for confidently measured modes, even though some of the force constants are very different. This suggests that one set of scale factors may be transferable to both isolated and hydrogen-bonded molecules, and that the simple representation of hydration used here may be a useful approximation. The second type of scale factors yield accurate frequencies, but they may not be generally transferable.
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