Lattice energies for ionic materials which separate into independent gaseous ions can be calculated bystandard Born-Haber-Fajans thermochemical cycle procedures, based on the energies of formation of those ions. However, if complex ions (such as sulfates) occur in the material, then a sophisticated calculation procedure must be invoked which requires allocation of the total ion charge among the atom components of the complex ion and evaluation of the attractive and repulsive energy terms. If,instead, the total ion charge is allocated to the central atom of the complex ion (with zero charge on the coordinated atoms), to create a “condensed charge ion” (having zero self-energy), thena straightforward calculation of the electrostatic (Madelun...
A simple method for the self-consistent calculation of the atomic charges and Madelung potentials in...
Expressions have been proposed for calculating the matrix elements of the Coulomb interaction of p a...
Electrostatic potentials in ionic crystals have been calculated with direct summation of the Coulomb...
The Madelung constants of ionic solids relate to their geometry and electrostatic interactions. Furt...
In this pure theoretical study, a hitherto unexplored equation based on Shannon radii of the ions fo...
We develop a powerful new limiting relation between lattice potential energy, U-POT, and unit cell v...
In this paper, based on the consideration of covalent behavior of adjacent ions in crystals, a calcu...
The Born-Lande equation has been used to calculate the lattice energy and bulk modulus of twenty one...
The cohesive or atomization energy of an ionic solid is the energy required to decompose the solid i...
Equations have been developed for the accurate estimation (usually within 5 %) of the lattice potent...
This paper introduces an elementary model for calculating the lattice energies of ionic crystals. Th...
Electrostatic energy (Madelung energy) is a major constituent of the cohesive energy of ionic crysta...
Our previous calculations for the ground-state energy of a high-density electron gas in a lattice of...
The lattice energies and other properties of ionic crystals have been studied on the basis of a Lenn...
The possibility of writing the repulsive energy in the Born model of binary ionic crystals as a sum ...
A simple method for the self-consistent calculation of the atomic charges and Madelung potentials in...
Expressions have been proposed for calculating the matrix elements of the Coulomb interaction of p a...
Electrostatic potentials in ionic crystals have been calculated with direct summation of the Coulomb...
The Madelung constants of ionic solids relate to their geometry and electrostatic interactions. Furt...
In this pure theoretical study, a hitherto unexplored equation based on Shannon radii of the ions fo...
We develop a powerful new limiting relation between lattice potential energy, U-POT, and unit cell v...
In this paper, based on the consideration of covalent behavior of adjacent ions in crystals, a calcu...
The Born-Lande equation has been used to calculate the lattice energy and bulk modulus of twenty one...
The cohesive or atomization energy of an ionic solid is the energy required to decompose the solid i...
Equations have been developed for the accurate estimation (usually within 5 %) of the lattice potent...
This paper introduces an elementary model for calculating the lattice energies of ionic crystals. Th...
Electrostatic energy (Madelung energy) is a major constituent of the cohesive energy of ionic crysta...
Our previous calculations for the ground-state energy of a high-density electron gas in a lattice of...
The lattice energies and other properties of ionic crystals have been studied on the basis of a Lenn...
The possibility of writing the repulsive energy in the Born model of binary ionic crystals as a sum ...
A simple method for the self-consistent calculation of the atomic charges and Madelung potentials in...
Expressions have been proposed for calculating the matrix elements of the Coulomb interaction of p a...
Electrostatic potentials in ionic crystals have been calculated with direct summation of the Coulomb...