Literature DB >> 21598938

DFT studies on a high energy density cage compound 4-trinitroethyl-2,6,8,10,12-pentanitrohezaazaisowurtzitane.

Jian-ying Zhang1, Hong-chen Du, Fang Wang, Xue-dong Gong, Yin-sheng Huang.   

Abstract

Polynitro cage compound 4-trinitroethyl-2,6,8,10,12-pentanitrohexaazaisowurtzitane has the same framework with but higher stability than CL-20 and is a potential new high energy density compound (HEDC). In this paper, the B3LYP/6-31G(d,p) method of density functional theory (DFT) has been used to study its heat of formation, IR spectrum, and thermodynamic properties. The stability of the compound was evaluated by the bond dissociation energies. The calculated results show that the first step of pyrolysis is the rupture of the N-NO(2) bond in the side chain and verify the experimental observation that the title compound has better stability than CL-20. The crystal structure obtained by molecular mechanics belongs to the P2(1)2(1)2(1) space group, with lattice parameters a = 12.59 Å, b = 10.52 Å, c = 12.89 Å, Z = 4, and ρ = 2.165 g·cm(-3). Both the detonation velocity of 9.767 km·s(-1) and the detonation pressure of 45.191 GPa estimated using the Kamlet-Jacobs equation are better than those of CL-20. Considering that this cage compound has a better detonation performance and stability than CL-20, it may be a superior HEDC.

Entities:  

Year:  2011        PMID: 21598938     DOI: 10.1021/jp1118822

Source DB:  PubMed          Journal:  J Phys Chem A        ISSN: 1089-5639            Impact factor:   2.781


  16 in total

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3.  Computational investigations into the substituent effects of -N₃, -NF₂, -NO₂, and -NH₂ on the structure, sensitivity and detonation properties of N, N'-azobis(1,2,4-triazole).

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Journal:  J Mol Model       Date:  2014-03-22       Impact factor: 1.810

4.  Comparative theoretical investigation of the structures, energetics, and stabilities of C7N5H11cages.

Authors:  Jianying Zhang; Xuedong Gong
Journal:  J Mol Model       Date:  2015-03-12       Impact factor: 1.810

5.  QSPR modeling of detonation parameters and sensitivity of some energetic materials: DFT vs. PM3 calculations.

Authors:  Jianying Zhang; Gangling Chen; Xuedong Gong
Journal:  J Mol Model       Date:  2017-05-22       Impact factor: 1.810

6.  Crystal structure, detonation performance, and thermal stability of a new polynitro cage compound: 2, 4, 6, 8, 10, 12, 13, 14, 15-nonanitro-2, 4, 6, 8, 10, 12, 13, 14, 15-nonaazaheptacyclo [5.5.1.1(3, 11).1 (5, 9)] pentadecane.

Authors:  Jian-ying Zhang; Hong-chen Du; Fang Wang; Xue-dong Gong; San-jiu Ying
Journal:  J Mol Model       Date:  2011-10-12       Impact factor: 1.810

7.  Computational study of the structure and properties of bicyclo[3.1.1]heptane derivatives for new high-energy density compounds with low impact sensitivity.

Authors:  Mingran Du
Journal:  J Mol Model       Date:  2017-12-18       Impact factor: 1.810

8.  Theoretical study on benzoheterocycle based energetic materials, effect of heterocyclic-fused, conjugation, hydrogen bond, and substitutional group on the detonation performance.

Authors:  Cheng Shen; Pengcheng Wang; Ming Lu
Journal:  J Mol Model       Date:  2018-01-11       Impact factor: 1.810

9.  Computational studies on the energetic properties of polynitroxanthines.

Authors:  Mei Li; Hang Xu; Fengmin Wu
Journal:  J Mol Model       Date:  2014-04-08       Impact factor: 1.810

10.  A theoretical study on 1,5-diazido-3-nitrazapentane (DANP) and 1,7-diazido-2,4,6-trinitrazaheptane (DATNH): molecular and crystal structures, thermodynamic and detonation properties, and pyrolysis mechanism.

Authors:  Junqing Yang; Fang Wang; Jianying Zhang; Guixiang Wang; Xuedong Gong
Journal:  J Mol Model       Date:  2013-10-27       Impact factor: 1.810

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