4.6 Article

Effects of hydrogen bond on the melting point of azole explosives

Journal

JOURNAL OF MOLECULAR STRUCTURE
Volume 1163, Issue -, Pages 54-60

Publisher

ELSEVIER
DOI: 10.1016/j.molstruc.2018.02.021

Keywords

Hydrogen bond; Melting point; Carriers for melt-cast explosives; Methyl; Amino

Funding

  1. NSAF [U1330135]

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Melting point is an important index to determine whether an explosive can be a melt cast carrier. In this study, the relationship among the molecular structure, crystal structure, and melting point of explosives was investigated by using nitroazole compounds. Hydrogen bonds influence crystal packing modes in chemically understandable ways. Hydrogen bonds also affect the changes in entropy and enthalpy in balancing melting process. Hence, different types of hydrogen bonds in explosive crystal structures were compared when the relationship between the molecular structure and the melting point of nitroazole explosives were analyzed. The effects of methyl and amino groups on intermolecular hydrogen bonds were also compared. Results revealed that the methyl and amino groups connected on the N(1) of the heterocyclic compound can reduce the melting point of azole explosive. This finding is possible because methyl and amino groups destroy the intermolecular hydrogen bond of the heterocyclic compound. (C) 2018 Published by Elsevier B.V.

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