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四硝基吡咯及其衍生物结构与性能的理论研究
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(中北大学化工与环境学院, 山西 太原 030051)

作者简介:

李云路(1990-),男,博士研究生,主要从事含能化合物的合成研究。e-mail: S1404038@st.nuc.edu.cn 通信联系人: 王建龙(1969-),男,教授,主要从事含能材料合成及应用研究。e-mail: wangjianlong@nuc.edu.cn

通讯作者:

王建龙(1969-),男,教授,主要从事含能材料合成及应用研究。e-mail: wangjianlong@nuc.edu.cn

基金项目:

中北大学研究生科技创新基金资助(20151227)


Theoretical Study on Structure and Properties of Tetranitropyrrole and Its Derivatives
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(School of Chemical Engineering & Environment North University of China, Taiyuan 030051, China)

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    摘要:

    为了寻找新型高能量密度材料, 设计了四硝基吡咯及其甲基、氨基、硝基衍生物。在DFT-B3LYP/6-31G*水平下对模型化合物进行了几何结构全优化。在DFT-B3LYP/6-311++G**水平计算了模型化合物的生成焓、爆轰性能。自然键轨道 (NBO) 分析了模型化合物引发键的强度进而考察了其热安全性。计算结果表明: 1-甲基四硝基吡咯密度为1.88 g·cm-3, 爆速和爆压分别为8.66 km·s-1和34.10 GPa, 其爆轰性能具有与1, 3, 5-三硝基-1, 3, 5-三氮杂环己烷 (RDX) 相当的爆轰性能; 四硝基吡咯、1-氨基四硝基吡咯密度分别为1.93 g·cm-3和2.04 g·cm-3, 爆速均为9.01 km·s-1, 爆压分别为37.54 GPa和38.73 GPa, 具有与1, 3, 5, 7-四硝基-1, 3, 5, 7-四氮杂环辛烷 (HMX) 相当的爆轰性能; 由于五硝基吡咯中含有五个硝基, 其热安全性最差, N (5)—NO2键离解能仅为60.8 kJ·mol-1。计算值与之前的实验值具有较好的一致性, 表明计算值可靠。

    Abstract:

    In order to search new high-energy density materials, 2, 3, 4, 5-tetranitropyrrole (TNP) and its methyl-, amino-, nitro-substituted derivatives were designed. Their structures were optimized at the DFT-B3LYP/6-31G* level. Heats of formation, detonation properties were calculated at the DFT-B3LYP/6-311++G** level. Nature Bond Orbital (NBO) analysis was carried to understanding the strength of trigger bond and further to access the thermal stability of the model compounds. The calculated results are as follows: the density, detonation velocity and detonation pressure of 1-methyl-2, 3, 4, 5-tetranitropyrrloe are 1.88 g·cm-3, 8.66 km·s-1 and 34.10 GPa, respectively, which is comparable to the detonation properties of 1, 3, 5-trinitro-1, 3, 5-triaza-cyclohexane (RDX). The densities of 2, 3, 4, 5-tetranitropyrrole and 1-amino-2, 3, 4, 5-tetranitropyrrole are 1.93 g·cm-3 and 2.04 g·cm-3, respectively; the detonation velocities are both 9.01 km·s-1, and detonation pressures are 37.54 GPa and 38.73 GPa, which suggests that the detonation properties of TNP and ATNP are both comparable to that of 1, 3, 5, 7-tetranitro-1, 3, 5, 7-tetraza-cyclooctcme (HMX). With containing five nitro groups, the BDE of nitro group N (5)—NO2 is 60.8 kJ·mol-1, suggesting that pentanitropyrrole has the poorest thermal stability in all five model compounds. The calculated results and previous experimental work agree reasonably well one another, showing values in this paper are reasonable.

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引用本文

李云路,刘田英,曹端林,等.四硝基吡咯及其衍生物结构与性能的理论研究[J].含能材料, 2017, 25(4):291-297. DOI:10.11943/j. issn.1006-9941.2017.04.004.
LI Yun-lu, LIU Tian-ying, CAO Duan-lin, et al. Theoretical Study on Structure and Properties of Tetranitropyrrole and Its Derivatives[J]. Chinese Journal of Energetic Materials, 2017, 25(4):291-297. DOI:10.11943/j. issn.1006-9941.2017.04.004.

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  • 收稿日期: 2016-09-26
  • 最后修改日期: 2016-11-21
  • 录用日期: 2016-11-16
  • 在线发布日期: 2017-04-26
  • 出版日期: 2017-04-27