TY - JOUR
T1 - Density functional calculations on the thermodynamic properties of a series of nitrosocubanes having the formula Csub8/subHsub8/sub−x(NO)x (x=1−8)
AU - Richard, Ryan M.
N1 - Richard, R. M.; Ball, D. W. Density functional calculations on the thermodynamic properties of a series of nitrosocubanes having the formula C8H8−x(NO)x (x=1−8). J. Hazard. Mater. 2009, 164, 1552-1555.
PY - 2009/5/30
Y1 - 2009/5/30
N2 - Recent studies have suggested that octanitrocubane and heptanitrocubane may be two of the most powerful non-nuclear high-energy materials currently known. Progressive substitution of the hydrogen atoms on cubane for nitroso groups is expected to also produce a new potential high-energy material, which should have thermodynamic properties similar to nitrocubane. In this study we predict optimized structures, vibrational frequencies, enthalpies of formation, and specific enthalpies of combustion for a series of nitrosocubanes ranging from mononitrosocubane to octanitrosocubane. Our results indicate, on the basis of the specific enthalpies of combustion alone, that mononitrosocubane should make the best new high-energy material; however, we speculate that the velocity of detonation of octa- and heptanitrosocubane will make them better high-energy materials.
AB - Recent studies have suggested that octanitrocubane and heptanitrocubane may be two of the most powerful non-nuclear high-energy materials currently known. Progressive substitution of the hydrogen atoms on cubane for nitroso groups is expected to also produce a new potential high-energy material, which should have thermodynamic properties similar to nitrocubane. In this study we predict optimized structures, vibrational frequencies, enthalpies of formation, and specific enthalpies of combustion for a series of nitrosocubanes ranging from mononitrosocubane to octanitrosocubane. Our results indicate, on the basis of the specific enthalpies of combustion alone, that mononitrosocubane should make the best new high-energy material; however, we speculate that the velocity of detonation of octa- and heptanitrosocubane will make them better high-energy materials.
KW - Nitrosocubanes; High-energy materials; B3LYP
UR - https://engagedscholarship.csuohio.edu/scichem_facpub/93
UR - http://journals.ohiolink.edu/ejc/article.cgi?issn=03043894issue=v164i2-3article=1552_dfcottonhtfc
U2 - 10.1016/j.jhazmat.2008.08.057
DO - 10.1016/j.jhazmat.2008.08.057
M3 - Article
VL - 164
JO - Journal of Hazardous Materials
JF - Journal of Hazardous Materials
ER -