TY - JOUR
T1 - Ab initio study of electronic structure and properties in crystalline 1,1,3,3,5,5-hexaazidocyclotriphosphazene
AU - Huang, Hui Sheng
AU - Zhang, Jian Guo
AU - Zhang, Tong Lai
AU - Yang, Li
AU - Zheng, Hui Hui
PY - 2008/5
Y1 - 2008/5
N2 - The banding and electronic structures of crystalline 1,1,3,3,5,5- hexaazidocyclotriphosphazene (P3N21) have been investigated at DFT-B3LYP/6-31G(d) level. Relaxed crystal structure compares well with experimental data. The energy gap is 5.57 eV, indicating that P 3N21 is an insulator. The frontier orbital is mainly formed by atomic orbitals of azido group, so it is the most reactive part of the molecule. The intermolecular interaction is strong along the direction that is nearly perpendicular to the phosphazene ring. The distribution of electrostatic potential is quite uneven, so P3N21 has a very high impact sensitivity. The point charge electrostatic potential is very high between the azido groups of the neighboring molecules, which indicates that the crystal lattice in this position may easily be broken and becomes the explosion center when P3N21 is impacted. The overlap populations of P-Nα bonds are much less than those of other bonds, therefore the P-Nα bonds first rupture by external stimuli, which agrees well with the experimental study of mass spectrum.
AB - The banding and electronic structures of crystalline 1,1,3,3,5,5- hexaazidocyclotriphosphazene (P3N21) have been investigated at DFT-B3LYP/6-31G(d) level. Relaxed crystal structure compares well with experimental data. The energy gap is 5.57 eV, indicating that P 3N21 is an insulator. The frontier orbital is mainly formed by atomic orbitals of azido group, so it is the most reactive part of the molecule. The intermolecular interaction is strong along the direction that is nearly perpendicular to the phosphazene ring. The distribution of electrostatic potential is quite uneven, so P3N21 has a very high impact sensitivity. The point charge electrostatic potential is very high between the azido groups of the neighboring molecules, which indicates that the crystal lattice in this position may easily be broken and becomes the explosion center when P3N21 is impacted. The overlap populations of P-Nα bonds are much less than those of other bonds, therefore the P-Nα bonds first rupture by external stimuli, which agrees well with the experimental study of mass spectrum.
KW - Band structure
KW - Density functional theory
KW - Electronic structure
KW - Electrostatic potential
KW - Phosphazene compound
UR - http://www.scopus.com/inward/record.url?scp=47149116823&partnerID=8YFLogxK
U2 - 10.1002/cjoc.200890158
DO - 10.1002/cjoc.200890158
M3 - Article
AN - SCOPUS:47149116823
SN - 1001-604X
VL - 26
SP - 854
EP - 858
JO - Chinese Journal of Chemistry
JF - Chinese Journal of Chemistry
IS - 5
ER -