International audienceIn the first paper of this series, the authors derived an expression for the interaction energy between two reagents in terms of the chemical reactivity indicators that can be derived from density functional perturbation theory. While negative interaction energies can explain reactivity, reactivity is often more simply explained using the “|dμ| big is good” rule or the maximum hardness principle. Expressions for the change in chemical potential (μ) and hardness when two reagents interact are derived. A partial justification for the maximum hardness principle is that the terms that appear in the interaction energy expression often reappear in the expression for the interaction hardness, but with opposite sign
Density Functional Theory (or DFT for short) is a potent methodology useful for calculating and unde...
In a previous work we have presented a numerical procedure for the calculation of the internal chemi...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...
In the first paper of this series, the authors derived an expression for the interaction energy betw...
International audienceReactivity descriptors indicate where a reagent is most reactive and how it is...
Reactivity descriptors indicate where a reagent is most reactive and how it is most likely to react....
Reactivity descriptors indicate where a reagent is most reactive and how it is most likely to react....
The fundaments of the modern Density Functional Theory (DFT), its basic theorems, principles and met...
Abstract. A brief perspective of the development of the density functional theory of chemical reacti...
Abstract: In this present paper, we have made an attempt to explain the theoretical basis for the em...
Abstract: In this present paper, we have made an attempt to explain the theoretical basis for the em...
In recent papers we defined a theoretical frame aimed at characterizing the hardness and potential e...
The fundaments of the modern Density Functional Theory (DFT), its basic theorems, principles and met...
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
We have studied the variation of hardness, polarizability, and valency of molecules during the cours...
Density Functional Theory (or DFT for short) is a potent methodology useful for calculating and unde...
In a previous work we have presented a numerical procedure for the calculation of the internal chemi...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...
In the first paper of this series, the authors derived an expression for the interaction energy betw...
International audienceReactivity descriptors indicate where a reagent is most reactive and how it is...
Reactivity descriptors indicate where a reagent is most reactive and how it is most likely to react....
Reactivity descriptors indicate where a reagent is most reactive and how it is most likely to react....
The fundaments of the modern Density Functional Theory (DFT), its basic theorems, principles and met...
Abstract. A brief perspective of the development of the density functional theory of chemical reacti...
Abstract: In this present paper, we have made an attempt to explain the theoretical basis for the em...
Abstract: In this present paper, we have made an attempt to explain the theoretical basis for the em...
In recent papers we defined a theoretical frame aimed at characterizing the hardness and potential e...
The fundaments of the modern Density Functional Theory (DFT), its basic theorems, principles and met...
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
We have studied the variation of hardness, polarizability, and valency of molecules during the cours...
Density Functional Theory (or DFT for short) is a potent methodology useful for calculating and unde...
In a previous work we have presented a numerical procedure for the calculation of the internal chemi...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...