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Theoretical studies on the stability of the salts formed by DTDO with HNO 3 and HN(NO 2 ) 2 / created by Xueli Zhang, Junqing Yang and Xuedong Gong

By: Contributor(s): Material type: TextTextSeries: Journal of chemical sciences ; Volume 127, number 4Bangalore : Springer, 2015Content type:
  • text
Media type:
  • unmediated
Carrier type:
  • volume
ISSN:
  • 09743626
Subject(s): LOC classification:
  • QD31 JOU
Online resources: Abstract: Three stable conformations of salts formed from 3,6-diguanidino-1,2,4,5-tetrazine-1,4-di-N-oxide (DTDO) and HNO3 and HN(NO2)2 were studied using the density functional theory. For two salts, free energies (Gs) and total energies (Es) of the three conformations increase in the same order. Intramolecular interactions in the three conformations, such as the hydrogen bonding interaction (E H), the charge transfer (q), the binding energy (E b), the dispersion energy (E dis) and the second-order perturbation energy (E 2), decrease in completely opposite order to that of Gs and Es. Different conformations have distinct effects on the chemical stabilities and UV stabilities of two salts. Aromaticities of tetrazine in different conformations are slightly different. Although stabilities of the three conformations are different, their values are comparable.
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Item type Current library Call number Vol info Status Notes Date due Barcode
Journal Article Journal Article Main Library - Special Collections QD31 JOU (Browse shelf(Opens below)) Vol. 127, no.4 (pages 761-769) Not for loan For in house use only

Three stable conformations of salts formed from 3,6-diguanidino-1,2,4,5-tetrazine-1,4-di-N-oxide (DTDO) and HNO3 and HN(NO2)2 were studied using the density functional theory. For two salts, free energies (Gs) and total energies (Es) of the three conformations increase in the same order. Intramolecular interactions in the three conformations, such as the hydrogen bonding interaction (E H), the charge transfer (q), the binding energy (E b), the dispersion energy (E dis) and the second-order perturbation energy (E 2), decrease in completely opposite order to that of Gs and Es. Different conformations have distinct effects on the chemical stabilities and UV stabilities of two salts. Aromaticities of tetrazine in different conformations are slightly different. Although stabilities of the three conformations are different, their values are comparable.

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