The energy and hardness profile for a series of inter and intramolecular conformational changes at several levels of calculation were computed. The hardness profiles were found to be calculated as the difference between the vertical ionization potential and electron affinity. The hardness profile shows the correct number of stationary points independently of the basis set and methodology used. It was found that the hardness profiles can be used to check the reliability of the energy profiles for those chemical syste
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
It is shown that molecular hardness can be expressed as the geometric mean of the hardness values fo...
We present benchmark values for the electronic chemical potential and chemical hardness from referen...
In recent papers we defined a theoretical frame aimed at characterizing the hardness and potential e...
We have computationally explored the fulfillment of the Maximum Hardness Principle in chemical react...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...
In this paper we test the principle of maximum hardness through an accurate quantum chemical calcula...
An overview is given on a study which showed that not only in chemical reactions but also in the fav...
In earlier work, the present authors have shown that hardness profiles are less dependent on the lev...
In earlier work, the present authors have shown that hardness profiles are less dependent on the lev...
The validity of the maximum hardness principle (MHP) is tested in the cases of 50 chemical reactions...
The validity of the maximum hardness principle (MHP) is tested in the cases of 50 chemical reactions...
Ab initio SCF/6-31G** calculations are performed on the 1,Zhydrogen shift reaction in some HAB molec...
By taking the energy to be a Morse-like function of the number of electrons, <i>E</i>(<i>N</i>) = α...
In this article, for the first time, we have correlated chemical hardness with polarizability when a...
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
It is shown that molecular hardness can be expressed as the geometric mean of the hardness values fo...
We present benchmark values for the electronic chemical potential and chemical hardness from referen...
In recent papers we defined a theoretical frame aimed at characterizing the hardness and potential e...
We have computationally explored the fulfillment of the Maximum Hardness Principle in chemical react...
Hardness and electrophilicity values for several molecules involved in different chemical reactions ...
In this paper we test the principle of maximum hardness through an accurate quantum chemical calcula...
An overview is given on a study which showed that not only in chemical reactions but also in the fav...
In earlier work, the present authors have shown that hardness profiles are less dependent on the lev...
In earlier work, the present authors have shown that hardness profiles are less dependent on the lev...
The validity of the maximum hardness principle (MHP) is tested in the cases of 50 chemical reactions...
The validity of the maximum hardness principle (MHP) is tested in the cases of 50 chemical reactions...
Ab initio SCF/6-31G** calculations are performed on the 1,Zhydrogen shift reaction in some HAB molec...
By taking the energy to be a Morse-like function of the number of electrons, <i>E</i>(<i>N</i>) = α...
In this article, for the first time, we have correlated chemical hardness with polarizability when a...
In this paper we relate the change of chemical hardness and potential with the binding energies as t...
It is shown that molecular hardness can be expressed as the geometric mean of the hardness values fo...
We present benchmark values for the electronic chemical potential and chemical hardness from referen...