Although they were first reported in 1963, molecules with a boron-oxygen-nitrogen dimeric backbone do not seem to have been investigated seriously in terms of thermodynamic properties. Here we report on the calculated structures and properties, including thermodynamics, of several so-called “BON-BON” molecules. With the popularity of nitrogen-containing substituents on new high-energy materials, nitro-substituted BON-BONs were a focus of our investigation. A total of 42 BON-BON molecules were evaluated, and thermochemical analysis shows a decrease in the specific enthalpy of combustion or decomposition with increasing NO2 content, consistent with other systems
Local nature of the boron-nitrogen (BN) bonding with different formal multiplicities (B≡N, B=N, B-N)...
Recent studies have suggested that octanitrocubane and heptanitrocubane are two of the most powerful...
Resonance energies are calculated for a number of aromatic, and potentially aromatic, compounds cont...
Although they were first reported in 1963, molecules with a boron-oxygen-nitrogen dimeric backbone d...
As a follow-up on a study of a family of boron-oxygen-nitrogen compounds composed of two datively bo...
Lawong, A. K.; Ball, D. W. BON-BONs: cyclic molecules with a boron-oxygen-nitrogen backbone. Computa...
Density functional theory calculations were performed on a series of nitroboroxine molecules (cyclo-...
Various cyclic N-8 isomers are considered at the levels of B3LYP/6-311 ++G(d,p) and B3LYP/cPVTZ. Som...
Following several recent studies of small nitrogen-containing ring compounds for use as fuels, we fo...
As part of a continuing study of new potential high energy materials, here we present results of cal...
Following a recent study of boron-containing compounds for use as fuels, we follow up here with calc...
Abstract: The structural isomers of nitroborazines were optimized at M06-2X/6-311++G* * level of the...
As part of a search for new high energy density materials, we used density functional theoretical ca...
The structures and energetics of the N202 isomers are predicted at several levels of theory. Both si...
Fullerenes are carbon molecules arranged in a closed hollow shell to form spherical-like structures....
Local nature of the boron-nitrogen (BN) bonding with different formal multiplicities (B≡N, B=N, B-N)...
Recent studies have suggested that octanitrocubane and heptanitrocubane are two of the most powerful...
Resonance energies are calculated for a number of aromatic, and potentially aromatic, compounds cont...
Although they were first reported in 1963, molecules with a boron-oxygen-nitrogen dimeric backbone d...
As a follow-up on a study of a family of boron-oxygen-nitrogen compounds composed of two datively bo...
Lawong, A. K.; Ball, D. W. BON-BONs: cyclic molecules with a boron-oxygen-nitrogen backbone. Computa...
Density functional theory calculations were performed on a series of nitroboroxine molecules (cyclo-...
Various cyclic N-8 isomers are considered at the levels of B3LYP/6-311 ++G(d,p) and B3LYP/cPVTZ. Som...
Following several recent studies of small nitrogen-containing ring compounds for use as fuels, we fo...
As part of a continuing study of new potential high energy materials, here we present results of cal...
Following a recent study of boron-containing compounds for use as fuels, we follow up here with calc...
Abstract: The structural isomers of nitroborazines were optimized at M06-2X/6-311++G* * level of the...
As part of a search for new high energy density materials, we used density functional theoretical ca...
The structures and energetics of the N202 isomers are predicted at several levels of theory. Both si...
Fullerenes are carbon molecules arranged in a closed hollow shell to form spherical-like structures....
Local nature of the boron-nitrogen (BN) bonding with different formal multiplicities (B≡N, B=N, B-N)...
Recent studies have suggested that octanitrocubane and heptanitrocubane are two of the most powerful...
Resonance energies are calculated for a number of aromatic, and potentially aromatic, compounds cont...