TY - JOUR
T1 - Theoretical study of the heats of formation, detonation properties, and bond dissociation energies of substituted bis-1,2,4-triazole compounds
AU - Bao, Fang
AU - Zhang, Gongzheng
AU - Jin, Shaohua
AU - Zhang, Yuping
AU - Shu, Qinghai
AU - Li, Lijie
N1 - Publisher Copyright:
© 2018, Springer-Verlag GmbH Germany, part of Springer Nature.
PY - 2018/4/1
Y1 - 2018/4/1
N2 - The heats of formation (HOFs), detonation properties, and bond dissociation energies (BDEs) of a series of energetic bis-1,2,4-trizaole compounds with different substituents were studied using density functional theory at the 6–311 + G(2df, 2p) level. The HOF results indicated that the presence of the substituents –NH2, –NO2, –NHNO2, and –N3 markedly increases the HOFs of bis-1,2,4-trizaole compounds. The calculated detonation velocities and detonation pressures indicated that the presence of the substituents –NH2, –NO2, –NHNO2, –CH(NO2)2, and –OH strongly enhances the detonation properties of bis-1,2,4-trizaole compounds. The BDEs results indicated that the presence of the substituents –H, –NH2, and –OH substituent groups greatly improves the thermal stabilities of bis-1,2,4-trizaole compounds. Based on its detonation properties and BDEs, one of the bis-1,2,4-trizaole compounds (B6) is a potential alternative explosive to 1,3,5-trinitro-1,3,5-triazacyclohexane (RDX).
AB - The heats of formation (HOFs), detonation properties, and bond dissociation energies (BDEs) of a series of energetic bis-1,2,4-trizaole compounds with different substituents were studied using density functional theory at the 6–311 + G(2df, 2p) level. The HOF results indicated that the presence of the substituents –NH2, –NO2, –NHNO2, and –N3 markedly increases the HOFs of bis-1,2,4-trizaole compounds. The calculated detonation velocities and detonation pressures indicated that the presence of the substituents –NH2, –NO2, –NHNO2, –CH(NO2)2, and –OH strongly enhances the detonation properties of bis-1,2,4-trizaole compounds. The BDEs results indicated that the presence of the substituents –H, –NH2, and –OH substituent groups greatly improves the thermal stabilities of bis-1,2,4-trizaole compounds. Based on its detonation properties and BDEs, one of the bis-1,2,4-trizaole compounds (B6) is a potential alternative explosive to 1,3,5-trinitro-1,3,5-triazacyclohexane (RDX).
KW - Bis-1,2,4-triazole compounds
KW - Bond dissociation energies
KW - Density functional theory
KW - Detonation properties
KW - Heats of formation
UR - http://www.scopus.com/inward/record.url?scp=85043282535&partnerID=8YFLogxK
U2 - 10.1007/s00894-018-3626-7
DO - 10.1007/s00894-018-3626-7
M3 - Article
C2 - 29511823
AN - SCOPUS:85043282535
SN - 1610-2940
VL - 24
JO - Journal of Molecular Modeling
JF - Journal of Molecular Modeling
IS - 4
M1 - 85
ER -