MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE

A series of cyclic energetic derivatives based on nitroguanidine and 1,1-diamino-2,2-dinitroethene were theoretically designed. The spatial structures, infrared spectrometry, heats of formation, electronic structures, detonation properties, and thermal stabilities of these designed compounds were fu...

Full description

Bibliographic Details
Main Authors: Xiao Menghui, Jin Xinghui, Zhou Jianhua, Hu Bingcheng
Format: Article
Language:English
Published: Sociedade Brasileira de Química
Series:Química Nova
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422019000200181&lng=en&tlng=en
id doaj-c720d8788d6e470d99cc7fc86f2c03f1
record_format Article
spelling doaj-c720d8788d6e470d99cc7fc86f2c03f12020-11-25T01:11:58ZengSociedade Brasileira de QuímicaQuímica Nova1678-706442218119110.21577/0100-4042.20170317S0100-40422019000200181MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENEXiao MenghuiJin XinghuiZhou JianhuaHu BingchengA series of cyclic energetic derivatives based on nitroguanidine and 1,1-diamino-2,2-dinitroethene were theoretically designed. The spatial structures, infrared spectrometry, heats of formation, electronic structures, detonation properties, and thermal stabilities of these designed compounds were fully investigated by density functional theory. It is found that all the designed compounds have moderate stabilities (bond dissociation energies range from 11.3 to 99.0 kJ mol-1), high crystal densities (from 1.9589 to 2.00188 g cm-3), high positive heats of formation (from 649.6 to 1060.8 kJ mol-1) and high positive heats of detonation (from 1074.77 to 1332.06 cal g-1) which lead to the excellent detonation properties (detonation velocities range from 8.71 to 9.05 km s-1 while detonation pressures range from 35.47 to 38.55 GPa). Electronic structures such as electrostatic potentials on the surface, electronic densities, highest occupied molecular orbitals, lowest unoccupied molecular orbitals and their energy gaps were also simulated to give a better understanding of chemical and physical properties of these compounds. All the data may shine lights on the explosive searching and synthesis.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422019000200181&lng=en&tlng=enmaterialsdensity functional theorydetonation propertiesthermal stabilitieselectronic structures
collection DOAJ
language English
format Article
sources DOAJ
author Xiao Menghui
Jin Xinghui
Zhou Jianhua
Hu Bingcheng
spellingShingle Xiao Menghui
Jin Xinghui
Zhou Jianhua
Hu Bingcheng
MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE
Química Nova
materials
density functional theory
detonation properties
thermal stabilities
electronic structures
author_facet Xiao Menghui
Jin Xinghui
Zhou Jianhua
Hu Bingcheng
author_sort Xiao Menghui
title MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE
title_short MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE
title_full MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE
title_fullStr MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE
title_full_unstemmed MOLECULE DESIGN AND PROPERTIES OF CYCLIC ENERGETIC MATERIALS BASED ON NITROGUANIDINE AND 1,1-DIAMINO-2,2-DINITROETHENE
title_sort molecule design and properties of cyclic energetic materials based on nitroguanidine and 1,1-diamino-2,2-dinitroethene
publisher Sociedade Brasileira de Química
series Química Nova
issn 1678-7064
description A series of cyclic energetic derivatives based on nitroguanidine and 1,1-diamino-2,2-dinitroethene were theoretically designed. The spatial structures, infrared spectrometry, heats of formation, electronic structures, detonation properties, and thermal stabilities of these designed compounds were fully investigated by density functional theory. It is found that all the designed compounds have moderate stabilities (bond dissociation energies range from 11.3 to 99.0 kJ mol-1), high crystal densities (from 1.9589 to 2.00188 g cm-3), high positive heats of formation (from 649.6 to 1060.8 kJ mol-1) and high positive heats of detonation (from 1074.77 to 1332.06 cal g-1) which lead to the excellent detonation properties (detonation velocities range from 8.71 to 9.05 km s-1 while detonation pressures range from 35.47 to 38.55 GPa). Electronic structures such as electrostatic potentials on the surface, electronic densities, highest occupied molecular orbitals, lowest unoccupied molecular orbitals and their energy gaps were also simulated to give a better understanding of chemical and physical properties of these compounds. All the data may shine lights on the explosive searching and synthesis.
topic materials
density functional theory
detonation properties
thermal stabilities
electronic structures
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0100-40422019000200181&lng=en&tlng=en
work_keys_str_mv AT xiaomenghui moleculedesignandpropertiesofcyclicenergeticmaterialsbasedonnitroguanidineand11diamino22dinitroethene
AT jinxinghui moleculedesignandpropertiesofcyclicenergeticmaterialsbasedonnitroguanidineand11diamino22dinitroethene
AT zhoujianhua moleculedesignandpropertiesofcyclicenergeticmaterialsbasedonnitroguanidineand11diamino22dinitroethene
AT hubingcheng moleculedesignandpropertiesofcyclicenergeticmaterialsbasedonnitroguanidineand11diamino22dinitroethene
_version_ 1725168483389407232