Following our recent studies on strained boron substituted organic compounds, we follow up with a study on the thermodynamic properties of spiropentane and its boron containing derivatives. We have predicted the optimized structural parameters, vibrational frequencies, infrared intensities, enthalpies of formation, specific enthalpies of combustion, and hydride affinities for spiropentane and four of its boron containing derivatives at both the MP2 and B3LYP levels of theory. Our results indicate that triborospiropentane has the greatest specific enthalpy of combustion, at about −64 kJ g−1
The molecular structures of 2,6-diaza-1,3,5,7-tetraoxaspiro[3,3]heptane (1) and its dinitro derivati...
Abstract: The molecule stability of two different pentacoordinate hydridophosphoranes having similar...
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...
Following our recent study on the usefulness of borospiropentanes as new potential high-energy mater...
Following our recent studies on cyclic boron compounds potential use as high energy materials, we ca...
Density functional calculations were performed on a series of nitro-substituted spiropentane molecul...
The structures and energies of a set of spiropyrans and merocyanines – BIPS [1 ,3 ,3 -trimethylsp...
The standard enthalpy of formation of tri(tertiary-butylperoxy)horane has been determined from a the...
As a follow-up to previous work on boron–nitrogen rings, four ab initio calculational methods were u...
High-level computational data for standard gas phase enthalpies of formation, entropies, and heat ca...
Following a recent study of boron-containing compounds for use as fuels, we follow up here with calc...
The symmetrical thioboranes (RS)3B , where R= methyl, n-propyl, n-butyl, n-amyl and phenyl, have bee...
Spiropentyl radical was generated by hydrogen abstraction from spiropentane by t-butoxyl radical and...
As part of a search for new high energy density materials, we used density functional theoretical ca...
The molecular structures of 2,6-diaza-1,3,5,7-tetraoxaspiro[3,3]heptane (1) and its dinitro derivati...
Abstract: The molecule stability of two different pentacoordinate hydridophosphoranes having similar...
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...
Following our recent study on the usefulness of borospiropentanes as new potential high-energy mater...
Following our recent studies on cyclic boron compounds potential use as high energy materials, we ca...
Density functional calculations were performed on a series of nitro-substituted spiropentane molecul...
The structures and energies of a set of spiropyrans and merocyanines – BIPS [1 ,3 ,3 -trimethylsp...
The standard enthalpy of formation of tri(tertiary-butylperoxy)horane has been determined from a the...
As a follow-up to previous work on boron–nitrogen rings, four ab initio calculational methods were u...
High-level computational data for standard gas phase enthalpies of formation, entropies, and heat ca...
Following a recent study of boron-containing compounds for use as fuels, we follow up here with calc...
The symmetrical thioboranes (RS)3B , where R= methyl, n-propyl, n-butyl, n-amyl and phenyl, have bee...
Spiropentyl radical was generated by hydrogen abstraction from spiropentane by t-butoxyl radical and...
As part of a search for new high energy density materials, we used density functional theoretical ca...
The molecular structures of 2,6-diaza-1,3,5,7-tetraoxaspiro[3,3]heptane (1) and its dinitro derivati...
Abstract: The molecule stability of two different pentacoordinate hydridophosphoranes having similar...
We have used DFT methods to determine the structures and thermochemistry of several nitro-substitute...