In recent papers we defined a theoretical frame aimed at characterizing the hardness and potential energy profiles along a reduced reaction coordinate (omega) varying from 0 to 1. In this paper we generalize that model to propose a global procedure that allows one to consider simultaneously the evolution of the potential energy (V) in connection with that of the electronic chemical potential (mu) and the molecular hardness (eta) important results have been obtained: (a) the potential energy profile can be expressed in terms of the mu and eta profiles through an equation which is analogous to that used by Parr and Pearson to demonstrate the HSAB principle; (b) the chemical potential along omega is in turn written in terms of the hardness pro...
In this article, for the first time, we have correlated chemical hardness with polarizability when a...
International audienceIn this work, the third derivative of the energy with respect to the number of...
Abstract The reaction force and the electronic flux, first proposed by Toro-Labbé et al. (J Phys Che...
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
International audienceIn the first paper of this series, the authors derived an expression for the i...
The energy and hardness profile for a series of inter and intramolecular conformational changes at s...
Starting from a density functional theory (DFT) formalism describing the energy change from one grou...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...
Ab initio SCF/6-31G** calculations are performed on the 1,Zhydrogen shift reaction in some HAB molec...
Several applications of quantum mechanics and information theory to chemical reactivity problems are...
In a previous work we have presented a numerical procedure for the calculation of the internal chemi...
We have studied the variation of hardness, polarizability, and valency of molecules during the cours...
The chemical hardness concept and its realization within the conceptual density functional theory is...
The chemical hardness is, after the chemical potential, the most important concept in describing the...
Artículo de publicación ISIIn the course of a reaction it is the shape of the Fukui potential that g...
In this article, for the first time, we have correlated chemical hardness with polarizability when a...
International audienceIn this work, the third derivative of the energy with respect to the number of...
Abstract The reaction force and the electronic flux, first proposed by Toro-Labbé et al. (J Phys Che...
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
International audienceIn the first paper of this series, the authors derived an expression for the i...
The energy and hardness profile for a series of inter and intramolecular conformational changes at s...
Starting from a density functional theory (DFT) formalism describing the energy change from one grou...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...
Ab initio SCF/6-31G** calculations are performed on the 1,Zhydrogen shift reaction in some HAB molec...
Several applications of quantum mechanics and information theory to chemical reactivity problems are...
In a previous work we have presented a numerical procedure for the calculation of the internal chemi...
We have studied the variation of hardness, polarizability, and valency of molecules during the cours...
The chemical hardness concept and its realization within the conceptual density functional theory is...
The chemical hardness is, after the chemical potential, the most important concept in describing the...
Artículo de publicación ISIIn the course of a reaction it is the shape of the Fukui potential that g...
In this article, for the first time, we have correlated chemical hardness with polarizability when a...
International audienceIn this work, the third derivative of the energy with respect to the number of...
Abstract The reaction force and the electronic flux, first proposed by Toro-Labbé et al. (J Phys Che...