The point atomic charges in a number of ionic H-bonded systems are studied by ab initio calculations as functions of the proton transfer coordinate. In the proton-bound complexes of water–water, ammonia–ammonia, formamide–water, formamide–ammonia, and dimethylether–ammonia, the net atomic charges were obtained using Mulliken population analysis and from the diagonal elements of the atomic polar tensors calculated at the HF/4–31G and MP2/6–31 + G** levels. The dependence of the atomic charges upon the coordinate of the transferring proton was found to be close (within an error of 0.02 e) to a linear function for intermolecular distances in the 2.5–2.8 Å range. The obtained charge and charge flux dependencies highlight the electron r...
Abstract: The population analysis of the hydrogen bond atoms was analyzed within the different basis...
The analytical model for the study of charge mobility in the molecules presented by Galimberti et al...
The transfer of the central proton between the two NH3 units of (H3NHNH3)+ is studied using the 4–31...
The point atomic charges in a number of ionic H-bonded systems are studied by ab initio calculations...
The point atomic charges in a number of ionic H-bonded systems are studied by ab initio calculations...
Ab initio (MINI-1) molecular orbital calculations were performed on model systems to investigate th...
Frequencies and intensities are calculated by ab initio methods for all vibrational modes of the 1:1...
Potentials for transfer of the central proton between the NH3 units of (H3NHNH3)+ are calculated via...
Proton transfers along the hydrogen bonds in the systems (H3NHNH3)+ and (H20HOH2)+ are studied by ab...
Ab initio molecular orbital methods are used to calculate potential energy surfaces for proton trans...
We carry out an accurate ab initio study of the interaction between ammonia and the whole series of ...
Barriers to proton transfer are computed using ab initio methods for a number of systems, charged a...
Matrix effects on the optimized geometries and the electronic properties of acid-base complexes XHB,...
Ab initio methods are used to probe the proton-bound complex involving a water molecule and an amide...
Ions of both positive and negative charge are placed in various locations around H bonds and energet...
Abstract: The population analysis of the hydrogen bond atoms was analyzed within the different basis...
The analytical model for the study of charge mobility in the molecules presented by Galimberti et al...
The transfer of the central proton between the two NH3 units of (H3NHNH3)+ is studied using the 4–31...
The point atomic charges in a number of ionic H-bonded systems are studied by ab initio calculations...
The point atomic charges in a number of ionic H-bonded systems are studied by ab initio calculations...
Ab initio (MINI-1) molecular orbital calculations were performed on model systems to investigate th...
Frequencies and intensities are calculated by ab initio methods for all vibrational modes of the 1:1...
Potentials for transfer of the central proton between the NH3 units of (H3NHNH3)+ are calculated via...
Proton transfers along the hydrogen bonds in the systems (H3NHNH3)+ and (H20HOH2)+ are studied by ab...
Ab initio molecular orbital methods are used to calculate potential energy surfaces for proton trans...
We carry out an accurate ab initio study of the interaction between ammonia and the whole series of ...
Barriers to proton transfer are computed using ab initio methods for a number of systems, charged a...
Matrix effects on the optimized geometries and the electronic properties of acid-base complexes XHB,...
Ab initio methods are used to probe the proton-bound complex involving a water molecule and an amide...
Ions of both positive and negative charge are placed in various locations around H bonds and energet...
Abstract: The population analysis of the hydrogen bond atoms was analyzed within the different basis...
The analytical model for the study of charge mobility in the molecules presented by Galimberti et al...
The transfer of the central proton between the two NH3 units of (H3NHNH3)+ is studied using the 4–31...