Positive values of electrostatic potentials above the central regions of the molecular surface are strongly related to the high sensitivities of highly energetic molecules. The influence of aromatic system size on the positive values of electrostatic potentials and bond dissociation energies of C–NO2 bonds was studied by Density Functional Theory (DFT) calculations on a series of polycyclic nitroaromatic molecules. Calculations performed at PBE/6-311G** level showed that with the increase of the aromatic system size, values of positive electrostatic potential above the central areas of selected energetic molecules decrease from 32.78 kcal mol−1 (1,2,4,5-tetranitrobenzene) to 15.28 kcal mol−1 (2,3,9,10-tetranitropentacene) leading to the dec...
Positive electrostatic potential over the central area of the molecular surface is one of the main c...
The bond dissociation energy (BDE) of the weakest bonds in 33 explosives were calculated and analyze...
<div><p>The structure, electron density distribution, energetic and electrostatic properties of simp...
Positive values of electrostatic potentials above the central regions of the molecular surface are s...
One of the key properties of explosives that makes them prone to detonation is a positive charge abo...
Design of new classes of high energetic materials (HEM) with lower sensitivity towards detonation ...
The computational design of explosives is becoming very popular since it represents a safe and envir...
The development of new classes of high energetic materials (HEM) with high efficiency and low impact...
Strongly positive electrostatic potential in the central areas of molecules of energetic materials i...
The existence of areas of strongly positive electrostatic potential in the central regions of the mo...
Decreasing the sensitivity towards detonation of high-energy materials (HEMs) is the ultimate goal o...
The development of novel high energy density materials (HEDMs) with superior energetic properties de...
Predicting the properties of new energetic materials using computer simulations is the ultimate goal...
We calculated the molecular electrostatic potential and bond dissociation energies for the weakest C...
It has been known for decades that high performances for explosives (as characterized by detonation ...
Positive electrostatic potential over the central area of the molecular surface is one of the main c...
The bond dissociation energy (BDE) of the weakest bonds in 33 explosives were calculated and analyze...
<div><p>The structure, electron density distribution, energetic and electrostatic properties of simp...
Positive values of electrostatic potentials above the central regions of the molecular surface are s...
One of the key properties of explosives that makes them prone to detonation is a positive charge abo...
Design of new classes of high energetic materials (HEM) with lower sensitivity towards detonation ...
The computational design of explosives is becoming very popular since it represents a safe and envir...
The development of new classes of high energetic materials (HEM) with high efficiency and low impact...
Strongly positive electrostatic potential in the central areas of molecules of energetic materials i...
The existence of areas of strongly positive electrostatic potential in the central regions of the mo...
Decreasing the sensitivity towards detonation of high-energy materials (HEMs) is the ultimate goal o...
The development of novel high energy density materials (HEDMs) with superior energetic properties de...
Predicting the properties of new energetic materials using computer simulations is the ultimate goal...
We calculated the molecular electrostatic potential and bond dissociation energies for the weakest C...
It has been known for decades that high performances for explosives (as characterized by detonation ...
Positive electrostatic potential over the central area of the molecular surface is one of the main c...
The bond dissociation energy (BDE) of the weakest bonds in 33 explosives were calculated and analyze...
<div><p>The structure, electron density distribution, energetic and electrostatic properties of simp...