Literature DB >> 26531304

A theoretical investigation into the strength of N-NO2 bonds, ring strain and electrostatic potential upon formation of intermolecular H-bonds between HF and the nitro group in nitrogen heterocyclic rings C n H2n N-NO2 (n = 2-5), RDX and HMX.

Bao-Guo Wang1, Fu-de Ren2, Wen-Jing Shi3.   

Abstract

Changes in N-NO2 bond strength, ring strain energy and electrostatic potential upon formation of intermolecular H-bonds between HF and the nitro group in nitrogen heterocyclic rings C n H2n N-NO2 (n = 2-5), RDX and HMX were investigated using DFT-B3LYP and MP2(full) methods with the 6-311++G(2df,2p) and aug-cc-pVTZ basis sets. Analysis of electron density shifts was also carried out. The results indicate that H-bonding energy correlates well with the increment of ring strain energy. Upon complex formation, the strength of the N-NO2 trigger-bond is enhanced, suggesting reduced sensitivity, while judged by the increased ring strain energy, sensitivity is increased. However, some features of the molecular surface electrostatic potential, such as a local maximum above the N-NO2 bond and ring, σ + (2) and electrostatic balance parameter ν, remain essentially unchanged upon complex formation, and only a small change in the impact sensitivity h 50 is suggested. It is not sufficient to determine sensitivity solely on the basis of trigger bond or ring strain; as a global feature of a molecule, the molecular surface electrostatic potential is available to help judge the change of sensitivity in H-bonded complexes. Graphical Abstract The strengthened N-NO2 bond suggests reduced sensitivity, while it is reverse by theincreased ring strain energy upon the complex formation. However, the molecular surfaceelectrostatic potential (V S) shows the little change of h 50. The V S should be taken into accountin the analysis of explosive sensitivity in the H-bonded complex.

Entities:  

Keywords:  Bond dissociation energy; Electrostatic potential; Intermolecular H-bond; MP2(full); Ring strain; Sensitivity

Year:  2015        PMID: 26531304     DOI: 10.1007/s00894-015-2842-7

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  18 in total

1.  A quantitative relationship for the shock sensitivities of energetic compounds based on X-NO(2) (X=C, N, O) bond dissociation energy.

Authors:  Jinshan Li
Journal:  J Hazard Mater       Date:  2010-04-13       Impact factor: 10.588

2.  Insight into shock-induced chemical reaction from the perspective of ring strain and rotation of chemical bonds.

Authors:  Bisheng Tan; Xinping Long; Jinshan Li; Fude Nie; Jinglun Huang
Journal:  J Mol Model       Date:  2012-07-10       Impact factor: 1.810

3.  Investigation of correlation between impact sensitivities and nitro group charges in nitro compounds.

Authors:  Chaoyang Zhang; Yuanjie Shu; Yigang Huang; Xiaodong Zhao; Haishan Dong
Journal:  J Phys Chem B       Date:  2005-05-12       Impact factor: 2.991

4.  A multivariate relationship for the impact sensitivities of energetic N-nitrocompounds based on bond dissociation energy.

Authors:  Jinshan Li
Journal:  J Hazard Mater       Date:  2009-09-24       Impact factor: 10.588

5.  Some molecular/crystalline factors that affect the sensitivities of energetic materials: molecular surface electrostatic potentials, lattice free space and maximum heat of detonation per unit volume.

Authors:  Peter Politzer; Jane S Murray
Journal:  J Mol Model       Date:  2015-01-29       Impact factor: 1.810

6.  Impact sensitivity and crystal lattice compressibility/free space.

Authors:  Peter Politzer; Jane S Murray
Journal:  J Mol Model       Date:  2014-04-23       Impact factor: 1.810

7.  A theoretical study on the strength of the C-NO2 bond and ring strain upon the formation of the intermolecular H-bonding interaction between HF and nitro group in nitrocyclopropane, nitrocyclobutane, nitrocyclopentane or nitrocyclohexane.

Authors:  Wei Qiu; Fu-de Ren; Wen-jing Shi; Yan-hong Wang
Journal:  J Mol Model       Date:  2015-04-12       Impact factor: 1.810

8.  Easy methods to study the smart energetic TNT/CL-20 co-crystal.

Authors:  Huarong Li; Yuanjie Shu; Shijie Gao; Ling Chen; Qing Ma; Xuehai Ju
Journal:  J Mol Model       Date:  2013-09-17       Impact factor: 1.810

9.  A hierarchy of homodesmotic reactions for thermochemistry.

Authors:  Steven E Wheeler; Kendall N Houk; Paul v R Schleyer; Wesley D Allen
Journal:  J Am Chem Soc       Date:  2009-02-25       Impact factor: 15.419

10.  Two dominant factors influencing the impact sensitivities of nitrobenzenes and saturated nitro compounds.

Authors:  Chenzhong Cao; Shuo Gao
Journal:  J Phys Chem B       Date:  2007-10-10       Impact factor: 2.991

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  2 in total

1.  A theoretical prediction of the relationships between the impact sensitivity and electrostatic potential in strained cyclic explosive and application to H-bonded complex of nitrocyclohydrocarbon.

Authors:  Fu-de Ren; Duan-lin Cao; Wen-jing Shi; Hong-fei Gao
Journal:  J Mol Model       Date:  2016-03-31       Impact factor: 1.810

2.  Theoretical investigation of the safety of nitroguanidine-based PBXs containing the nonpolar desensitizing agent polytetrafluoroethylene.

Authors:  Zhong-Qing Xue; Jing He; Jun Zhang; Xi-Liang Zhang; Yin-Gang Chen; Fu-de Ren
Journal:  J Mol Model       Date:  2017-11-20       Impact factor: 1.810

  2 in total

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