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Theoretical Investigations on the Stability and Pyrolysis Mechanism of Covalent Pentazoles with a Linear Substituent
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1.School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China;2.National Quality Supervision and Inspection Center for Industrial Explosive Materials, Nanjing 210094, China

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    Abstract:

    The study of polynitrogen pentazolate salts, which are usually achieved from the precursors of N5 covalent compounds, is the hotspot of research in the field of new energetic materials. In most cases, the stability of N5 covalent compounds will significantly affect the possibility of successful preparations of pentazolate salts. Herein, the calculations of dissociation energy (EBD) of the bonds in the straight side chain and activation energy (Ea) of the N5 ring were carried out for the selected eighteen non-aryl substituted N5 compounds (R—N5 or N5—R—N5) by using the B3LYP/6-31G** method of density functional theory, and meanwhile the influence of the side chain on their stabilities and pyrolysis mechanism were investigated. When R is the hydroxyl or amino group, the side chain and the N5 ring are more prone to break, making it difficult to obtain the N5- ring. When R is alkyl, the Ea of the N5 ring cleavage is relatively larger, making it more likely to produce the N5- ring, and the stability of the side chain′s C—N bond as well as the N5 ring will be little affected by the length of the alkyl chain. The sequential cleavage of two N5 rings occurs in the bicyclic molecular structures and the energy barrier of the second ring is higher than that of the first one, resulting in the formation of N2 and azide. The C—C bond on the side chain of the molecule will be broken before the break of C—N bond, which may significantly reduce the EBD of the C—N bond but have little effect on the Ea of the N5 ring. Therefore, for the preparations of pentazolate salts from covalent pentazoles, cutting off the C—C bond first may be more conducive to obtaining N5- ring.

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王靖,高贫,王桂香,等.直链取代五唑共价化合物的稳定性和热解机理理论研究[J].含能材料,2021,29(6):473-481.
WANG Jing, GAO Pin, WANG Gui-xiang, et al. Theoretical Investigations on the Stability and Pyrolysis Mechanism of Covalent Pentazoles with a Linear Substituent[J]. Chinese Journal of Energetic Materials,2021,29(6):473-481.

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History
  • Received:September 08,2020
  • Revised:April 20,2021
  • Adopted:February 07,2021
  • Online: April 07,2021
  • Published: June 25,2021