We explore explicit electron pair behaviour within the chemical bond (and lone pairs) by calculating the probability distribution for the center-of-mass (extracule) of an electron pair described by single localized orbitals. Using Edmiston–Ruedenberg localized orbitals in a series of 61 chemical systems, we demonstrate the utility of the extracule density as an interpretive tool in chemistry. By accessing localized regions of chemical space we simplify the interpretation of the extracule density and afford a quantum mechanical interpretation of “chemically intuitive” features of electronic structure. Specifically, we describe the localized effects on chemical bonds due to changes in electronegativities of bonded neighbours, bond strain, and...
The chemical formation process from the study of radial intracule densities by constructing the rela...
The lone pair lies at the heart of chemistry, and is often in a conceptual respect the site of chemi...
Abstract: The behavior of electrons in general many-electronic systems throughout the density functi...
Since the days of G.N. Lewis [1] chemists have been enamored with the concept of a localized electro...
We introduce the localized pair model of electronic structure analysis and propose the two-electron ...
Herein, we present a novel study of hydrogen bonding using the localized pair model. Using localized...
The so-called “Lewis pair” is a ubiquitous phenomenon in chemistry and is often used as an intuitive...
A topological analysis of intracule and extracule densities and their Laplacians computed within the...
Tesis con mención internacionalThe chemical bond might be considered as the central pillar of chemis...
Localized electron pair densities are explored with the purpose of developing a relationship between...
The hypertorus electron model is applied to the chemical bond. As a consequence, the bond topology c...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...
The chemical formation process has been studied from relaxation holes, Δ<i>h</i>(<i>u</i>), resultin...
The chemical formation process from the study of radial intracule densities by constructing the rela...
The lone pair lies at the heart of chemistry, and is often in a conceptual respect the site of chemi...
The chemical formation process from the study of radial intracule densities by constructing the rela...
The lone pair lies at the heart of chemistry, and is often in a conceptual respect the site of chemi...
Abstract: The behavior of electrons in general many-electronic systems throughout the density functi...
Since the days of G.N. Lewis [1] chemists have been enamored with the concept of a localized electro...
We introduce the localized pair model of electronic structure analysis and propose the two-electron ...
Herein, we present a novel study of hydrogen bonding using the localized pair model. Using localized...
The so-called “Lewis pair” is a ubiquitous phenomenon in chemistry and is often used as an intuitive...
A topological analysis of intracule and extracule densities and their Laplacians computed within the...
Tesis con mención internacionalThe chemical bond might be considered as the central pillar of chemis...
Localized electron pair densities are explored with the purpose of developing a relationship between...
The hypertorus electron model is applied to the chemical bond. As a consequence, the bond topology c...
The shapes of molecular orbitals (MOs) in polyatomic molecules are often difficult for meaningful ch...
The chemical formation process has been studied from relaxation holes, Δ<i>h</i>(<i>u</i>), resultin...
The chemical formation process from the study of radial intracule densities by constructing the rela...
The lone pair lies at the heart of chemistry, and is often in a conceptual respect the site of chemi...
The chemical formation process from the study of radial intracule densities by constructing the rela...
The lone pair lies at the heart of chemistry, and is often in a conceptual respect the site of chemi...
Abstract: The behavior of electrons in general many-electronic systems throughout the density functi...