Following our recent studies on cyclic boron compounds potential use as high energy materials, we calculate various properties of aminoborane, diaminoborane, and triaminoborane. Calculated properties include optimized geometries, enthalpies of formation, enthalpies of combustion, proton affinity, and hydride affinity. Of the three molecules studied, aminoborane represents the best candidate for a new high energy material at about 38.6 kJ of energy given off for every 1 g of aminoborane combusted
In this work, we investigate theoretically the energetics of some of the simplest boron-boron boron-...
Density functional theory calculations were performed on a series of nitroboroxine molecules (cyclo-...
Synthesis, thermodynamic characterization, and energetic properties of three novel high-nitrogen bis...
Following our recent studies on cyclic boron compounds potential use as high energy materials, we ca...
Following a recent study of boron-containing compounds for use as fuels, we follow up here with calc...
Following several recent studies of small nitrogen-containing ring compounds for use as fuels, we fo...
As part of a search for new high energy density materials, we used density functional theoretical ca...
In this study, we explore the possibility that methane substituted with one or two amino and nitro g...
Following our recent studies on strained boron substituted organic compounds, we follow up with a st...
High-level computational data for standard gas phase enthalpies of formation, entropies, and heat ca...
As a follow-up to previous work on boron–nitrogen rings, four ab initio calculational methods were u...
We have used DFT methods to determine the structures and thermochemistry of several nitro-substitute...
Following our recent studies of the thermodynamic properties of azaspiropentane and borospiropentane...
The standard enthalpy of formation of tri(tertiary-butylperoxy)horane has been determined from a the...
As a follow-up to our paper on a carbon–boron–nitrogen three-membered ring, we present here the pred...
In this work, we investigate theoretically the energetics of some of the simplest boron-boron boron-...
Density functional theory calculations were performed on a series of nitroboroxine molecules (cyclo-...
Synthesis, thermodynamic characterization, and energetic properties of three novel high-nitrogen bis...
Following our recent studies on cyclic boron compounds potential use as high energy materials, we ca...
Following a recent study of boron-containing compounds for use as fuels, we follow up here with calc...
Following several recent studies of small nitrogen-containing ring compounds for use as fuels, we fo...
As part of a search for new high energy density materials, we used density functional theoretical ca...
In this study, we explore the possibility that methane substituted with one or two amino and nitro g...
Following our recent studies on strained boron substituted organic compounds, we follow up with a st...
High-level computational data for standard gas phase enthalpies of formation, entropies, and heat ca...
As a follow-up to previous work on boron–nitrogen rings, four ab initio calculational methods were u...
We have used DFT methods to determine the structures and thermochemistry of several nitro-substitute...
Following our recent studies of the thermodynamic properties of azaspiropentane and borospiropentane...
The standard enthalpy of formation of tri(tertiary-butylperoxy)horane has been determined from a the...
As a follow-up to our paper on a carbon–boron–nitrogen three-membered ring, we present here the pred...
In this work, we investigate theoretically the energetics of some of the simplest boron-boron boron-...
Density functional theory calculations were performed on a series of nitroboroxine molecules (cyclo-...
Synthesis, thermodynamic characterization, and energetic properties of three novel high-nitrogen bis...