The geometry and energy of 1,3,5-cyclohexatriene, the reference molecule for the determination of the extra stabilization of benzene, have been calculated using an Ab Initio Valence Bond method. The theoretical resonance energy, according to Dewar, calculated as the energy difference between two-structure benzene and single-structure 1,3,5-cyclohexatriene, both with completely optimized geometries and orbitals, is only −12.05 kcal/mol. Resonance energies of −25.37 (local orbitals), −19.82 (delocal orbitals) and −44.13 (breathing orbitals) kcal/mol are found using the Pauling definition. The concept of the vertical resonance energy, however, is proven to be not tenable beyond a minimal basis
A very simple equation is presented which reproduces the empirical resonance energies of 12 differen...
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
The geometry and energy of 1,3,5-cyclohexatriene, the reference molecule for the determination of th...
Geometry optimizations have been performed for benzene and cyclobutadiene and for the corresponding ...
Geometry optimizations have been performed for benzene and cyclobutadiene and for the corresponding ...
Resonance energy is one of the criteria to measure aromaticity. The effect of the use of different o...
Resonance energy is one of the criteria to measure aromaticity. The effect of the use of different o...
Resonance energy is one of the criteria to measure aromaticity. The effect of the use of different o...
The secular equations corresponding to the five canonical structures for benzene and the forty-two f...
The secular equations corresponding to the five canonical structures for benzene and the forty-two f...
To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB)...
To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB)...
To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB)...
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
A very simple equation is presented which reproduces the empirical resonance energies of 12 differen...
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
The geometry and energy of 1,3,5-cyclohexatriene, the reference molecule for the determination of th...
Geometry optimizations have been performed for benzene and cyclobutadiene and for the corresponding ...
Geometry optimizations have been performed for benzene and cyclobutadiene and for the corresponding ...
Resonance energy is one of the criteria to measure aromaticity. The effect of the use of different o...
Resonance energy is one of the criteria to measure aromaticity. The effect of the use of different o...
Resonance energy is one of the criteria to measure aromaticity. The effect of the use of different o...
The secular equations corresponding to the five canonical structures for benzene and the forty-two f...
The secular equations corresponding to the five canonical structures for benzene and the forty-two f...
To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB)...
To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB)...
To probe the effect of external cyclopenta-fusion on a naphthalene core, ab initio valence bond (VB)...
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
A very simple equation is presented which reproduces the empirical resonance energies of 12 differen...
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....
We discuss Ab Initio approaches to calculate the energy lowering (stabilisation) due to aromaticity....