Net atomic charges (NACs) are widely used in all chemical sciences to concisely summarize key information about the partitioning of electrons among atoms in materials. The objective of this article is to develop an atomic population analysis method that is suitable for being used as a default method in quantum chemistry programs irrespective of the kind of basis sets employed. To address this challenge, we introduce a new atoms-in-materials method with the following nine properties: (1) exactly one electron distribution is assigned to each atom, (2) core electrons are assigned to the correct host atom, (3) NACs are formally independent of the basis set type because they are functionals of the total electron distribution, (4) the assigned at...
In this work, a method is described to extend the iterative Hirshfeld-I method, generally used for m...
Partial atomic charges describe the distribution of elec-tron density in a molecule, and therefore t...
The criterion of maximum overlap with the Huzinaga’s MINI basis functions as well as the ‘‘physical’...
We develop a nonempirical atoms-in-molecules (AIM) method for computing net atomic charges that simu...
The density derived electrostatic and chemical (DDEC/c3) method is implemented into the onetep progr...
We propose a new atomic-charge analysis, termed adjusted charge partitioning (ACP) scheme. To partit...
Polarizabilities and London dispersion forces are important to many chemical processes. Leading term...
In this thesis, we bring up several new schemes of partitioning the atomic partial charges for the p...
An algorithm is presented for carrying out decomposition of electronic charge density into atomic co...
We propose an atomic charge partitioning scheme, iterative adjusted charge partitioning (I-ACP), bel...
A thorough search of the distribution pattern of Na, K, and Ca atoms on graphene surface, carried ou...
In this article the quantum chemically calculated charge density distribution of 18-crown-6 and the ...
In the late 20th century, computer programs emerged that could solve the fundamental quantum mechani...
The electron density distribution is a fundamental property that provides information on the way in ...
We propose a novel approach to deriving partial atomic charges from population analysis. The new mod...
In this work, a method is described to extend the iterative Hirshfeld-I method, generally used for m...
Partial atomic charges describe the distribution of elec-tron density in a molecule, and therefore t...
The criterion of maximum overlap with the Huzinaga’s MINI basis functions as well as the ‘‘physical’...
We develop a nonempirical atoms-in-molecules (AIM) method for computing net atomic charges that simu...
The density derived electrostatic and chemical (DDEC/c3) method is implemented into the onetep progr...
We propose a new atomic-charge analysis, termed adjusted charge partitioning (ACP) scheme. To partit...
Polarizabilities and London dispersion forces are important to many chemical processes. Leading term...
In this thesis, we bring up several new schemes of partitioning the atomic partial charges for the p...
An algorithm is presented for carrying out decomposition of electronic charge density into atomic co...
We propose an atomic charge partitioning scheme, iterative adjusted charge partitioning (I-ACP), bel...
A thorough search of the distribution pattern of Na, K, and Ca atoms on graphene surface, carried ou...
In this article the quantum chemically calculated charge density distribution of 18-crown-6 and the ...
In the late 20th century, computer programs emerged that could solve the fundamental quantum mechani...
The electron density distribution is a fundamental property that provides information on the way in ...
We propose a novel approach to deriving partial atomic charges from population analysis. The new mod...
In this work, a method is described to extend the iterative Hirshfeld-I method, generally used for m...
Partial atomic charges describe the distribution of elec-tron density in a molecule, and therefore t...
The criterion of maximum overlap with the Huzinaga’s MINI basis functions as well as the ‘‘physical’...