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Structure and Synthetic Feasibility of Pseudo-benzene N6
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(School of Chemical Engineering, Nanjing University of Science & Technology, Nanjing 210094, China) 

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    Abstract:

    Fully optimized calculation and vibrational analysis for nitrogen and pseudo-benzene N6 were carried out using density-functional theory (DFT) at B3LYP/6-311++G(d, p) level. The thermodynamic properties at different temperatures were obtained from vibrational analysis, and the relationship between temperature and thermodynamic properties was deduced. Molecular mechanics (MM) method with Compass and Dreiding force fields were used to predict molecular packing for N6 among the 7 most probable space groups (P21/c, P-1, P212121, P21, Pbca, C2/c, and Pna21), respectively. Standard free energy changes of reaction 3N2(g)→N6(s) were calculated. The synthetic feasibility was analyzed with thermodynamics and reaction mechanism was predicted. Results show that N6 belongs to C2/c space group, the reaction 3N2(g)→N6(s) is feasible when temperature is below 61.6 K and the π bond delocalization has a decisive role in the reaction.

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赵国政,陆明.全氮苯N6的结构及合成可行性[J].含能材料,2013,21(2):217-221.
ZHAO Guo-zheng, LU Ming . Structure and Synthetic Feasibility of Pseudo-benzene N6[J]. Chinese Journal of Energetic Materials,2013,21(2):217-221.

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History
  • Received:June 13,2012
  • Revised:August 28,2012
  • Adopted:November 29,2012
  • Online: April 26,2013
  • Published: