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Comparison of the nature of pi and conventional H-bonds: a theoretical investigation SCIE SCOPUS

Title
Comparison of the nature of pi and conventional H-bonds: a theoretical investigation
Authors
Tarakeshwar, PKim, KS
Date Issued
2002-09-26
Publisher
ELSEVIER SCIENCE BV
Abstract
The interactions of the first-row hydrides (NH3, H2O, HF) with ethene have been investigated by carrying out calculations, at the second order Moller-Plesset (MP2) level of theory using both the 6-31 + G* and aug-cc-pVDZ basis sets. Unlike previous investigations of these systems, the geometries and vibrational frequencies in the present study were obtained by carrying out explicit counterpoise corrected optimizations. In an effort to understand the nature of the H...pi interactions prevalent in these complexes, the interaction energies were decomposed into individual energy components using the symmetry adapted perturbation theory. Given the goals of the present investigation, the geometries, vibrational frequencies and interaction energy components of the water dimer have also been evaluated. While the interaction energy of the conventional H-bond is dominated by electrostatic interactions, electrostatic, dispersive and inductive interactions are important in the description of the pi H-bond. An important distinction between conventional H-bonded complexes and the pi H-bonded complexes is that the inductive interaction gets magnified at the MP2 level. Thus, the inclusion of electron correlation is an important prerequisite both for the magnification of the inductive interaction and to obtain an accurate estimate of the dispersion energies. It is observed that changes in various geometrical and vibrational parameters of these pi H-bonded complexes can be correlated to the magnitude of either the individual or a combination of various interaction energy components. (C) 2002 Elsevier Science B.V. All rights reserved.
Keywords
MP2 level; Perturbation theory; Geometry optimization; Hydrogen bonding; pi H-bonds; conventional H-bonds; van der Waals complexes; counterpoise corrections; BSSE; Energy decomposition; SAPT; CORRELATED MOLECULAR CALCULATIONS; SUPERPOSITION ERROR CHANGE; POTENTIAL-ENERGY SURFACES; GAUSSIAN-BASIS SETS; AB-INITIO THEORY; HYDROGEN-BONDS; WATER MONOMER; COMPLEXES; CLUSTERS; FREQUENCIES
URI
https://oasis.postech.ac.kr/handle/2014.oak/18898
DOI
10.1016/S0022-2860(02)00221-1
ISSN
0022-2860
Article Type
Article
Citation
JOURNAL OF MOLECULAR STRUCTURE, vol. 615, no. 1-3, page. 227 - 238, 2002-09-26
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