| Literature DB >> 28912608 |
Emanuele Penocchio1, Marco Mendolicchio1, Nicola Tasinato1, Vincenzo Barone1.
Abstract
In this work semi-experimental and theoretical equilibrium geometries of 10 sulfur-containing organic molecules, as well as 4 oxygenated ones, are determined by means of a computational protocol based on density functional theory. The results collected in the present paper further enhance our online database of accurate semi-experimental equilibrium molecular geometries, adding 13 new molecules containing up to 8 atoms, for 12 of which the first semi-experimental equilibrium structure is reported, to the best of our knowledge. We focus in particular on sulfur-containing compounds, aiming both to provide new accurate data on some rather important chemical moieties, only marginally represented in the literature of the field, and to examine the structural features of carbon-sulfur bonds in the light of the previously presented linear regression approach. The structural changes issuing from substitution of oxygen by sulfur are discussed to get deeper insights on how modifications in electronic structure and nuclear potential can affect equilibrium geometries. With respect to our previous works, we perform non-linear constrained optimizations of equilibrium SE structures with a new general and user-friendly software under development in our group with updated definition of useful statistical indicators.Entities:
Keywords: DFT; Equilibrium Structure; Geometry Database; Nonlinear Regression
Year: 2016 PMID: 28912608 PMCID: PMC5595238 DOI: 10.1139/cjc-2016-0282
Source DB: PubMed Journal: Can J Chem ISSN: 0008-4042 Impact factor: 1.118