The negative-valued molecular electrostatic potential (MESP) minima (Vmin) observed in the substituted carbonyl molecules are found to be a sensitive measure for the analysis of the electronic charge perturbations due to the substituents. MESP topography of eight monosubstituted aliphatic carbonyl molecules (HCOR: R = H, F, Cl, CN, OH, SH, NH2, CH3, CF3, NO2) [following Bobadova-Parvanova, P.; Galabov, B. J. Phys. Chem. A 1998, 102, 1815] is carried out at the HF-SCF/6-31G∗∗ level for assessing this scheme. The Vmin values are seen to clearly reflect the changes due to the electron donating/withdrawing substituents. The electrostatic potential for intermolecular complexation (EPIC) model is used for predicting the possible hydro...
Hydrogen, halogen, and dihydrogen bonds in weak, medium and strong regimes (<1 to ∼60 kcal/mol) have...
Structural properties as well as subtle electronic effects occurring in (substituted arene)Cr(CO)3 c...
The complexes formed between dimethylchalcogens X(CH 3) 2 (X = S, Se, and Te) and hypohalous acids Y...
The negative-valued molecular electrostatic potential (MESP) minima (V<SUB>min</SUB>) observed in th...
International audienceThe presence of a carbonyl group in a molecule usually leads to the identifica...
The electrostatic potential near to the oxygen atom in each of the cyclic ethers 2,5-dihydrofuran, o...
Molecular electrostatic potentials (MESP) surrounding the π-region of several substituted ethyl...
The various heterodimers formed by a series of Lewis acids with NH3 as Lewis base are identified. Le...
Monte Carlo simulations for the planar and perpendicular allyl cation in liquid hydrogen fluoride ha...
The molecular electrostatic potential (MESP) and the corresponding polarization corrected one (PMESP...
Carbon bond and hydrogen bond are common noncovalent interactions; although recent advances on these...
Can two sites of positive electrostatic potential localized on the outer surfaces of two halogen ato...
The basis set dependence of the topographical structure of the molecular electrostatic potential (ME...
Ab initio study of hydrogen bonded complexes including the effect of proton acceptor substitution ha...
Hydrogen bonding is an important interaction, which controls solubility, partitioning and transport ...
Hydrogen, halogen, and dihydrogen bonds in weak, medium and strong regimes (<1 to ∼60 kcal/mol) have...
Structural properties as well as subtle electronic effects occurring in (substituted arene)Cr(CO)3 c...
The complexes formed between dimethylchalcogens X(CH 3) 2 (X = S, Se, and Te) and hypohalous acids Y...
The negative-valued molecular electrostatic potential (MESP) minima (V<SUB>min</SUB>) observed in th...
International audienceThe presence of a carbonyl group in a molecule usually leads to the identifica...
The electrostatic potential near to the oxygen atom in each of the cyclic ethers 2,5-dihydrofuran, o...
Molecular electrostatic potentials (MESP) surrounding the π-region of several substituted ethyl...
The various heterodimers formed by a series of Lewis acids with NH3 as Lewis base are identified. Le...
Monte Carlo simulations for the planar and perpendicular allyl cation in liquid hydrogen fluoride ha...
The molecular electrostatic potential (MESP) and the corresponding polarization corrected one (PMESP...
Carbon bond and hydrogen bond are common noncovalent interactions; although recent advances on these...
Can two sites of positive electrostatic potential localized on the outer surfaces of two halogen ato...
The basis set dependence of the topographical structure of the molecular electrostatic potential (ME...
Ab initio study of hydrogen bonded complexes including the effect of proton acceptor substitution ha...
Hydrogen bonding is an important interaction, which controls solubility, partitioning and transport ...
Hydrogen, halogen, and dihydrogen bonds in weak, medium and strong regimes (<1 to ∼60 kcal/mol) have...
Structural properties as well as subtle electronic effects occurring in (substituted arene)Cr(CO)3 c...
The complexes formed between dimethylchalcogens X(CH 3) 2 (X = S, Se, and Te) and hypohalous acids Y...