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Thermal Behavior of 3-Nitro-5-guanidino-1,2,4-oxadiazole
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School of Chemical Engineering Environment,Beijing Institute of Technology,School of Chemical Engineering Environment,Beijing Institute of Technology,School of Chemical Engineering Environment,Beijing Institute of Technology

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    Abstract:

    Nitro-5-guanidino-1,2,4-oxadiazole (NOG) was obtained by oxidation of diaminoglycoluril (AG) with in situ generated dimethyldioxirane (DMDO). The particle morphological appearance of NOG prepared with the quick precipitation method was studied by scanning electron microscopy (SEM). The thermal behavior of NOG was studied by differential scanning calorimetry (DSC) and differential thermal/thermo-gravimetric analyzer (TG-DTA). The apparent activation energy (E) and pre-exponential factor (A) of the exothermic decomposition reaction,the peak temperature (TP0) of heating rate β→0, and activation entropy (ΔS≠), activation enthalpy (ΔH≠),activation Gibbs free energy (ΔG≠) at TP0 of the reaction and the critical temperature of thermal explosion (Tb) were calculated. The results show that NOG has better heat-resistance ability. The decomposition temperature of NOG is 290 ℃. The critical temperature of thermal explosion (Tb) is 291.56 ℃, ΔS≠ is 232.35 J·k-1·mol-1, ΔH≠ and ΔG≠ is 267.36 kJ·mol-1 and 138.42 kJ·mol-1, respectively. 

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付占达,王阳,陈甫雪.新型异呋咱类含能材料NOG的热行为[J].含能材料,2012,20(5):583-586.
FU Zhan-da, WANG Yang, CHEN Fu-xue . Thermal Behavior of 3-Nitro-5-guanidino-1,2,4-oxadiazole[J]. Chinese Journal of Energetic Materials,2012,20(5):583-586.

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History
  • Received:January 12,2012
  • Revised:February 20,2012
  • Adopted:February 23,2012
  • Online: September 26,2012
  • Published: