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3-五唑基吡啶及其衍生物作为N5离子前体的理论研究
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南京理工大学化学与化工学院, 江苏 南京 210094

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国家自然科学基金(21903044, 11972178, 21975128)


A Theoretical Study on 3-Pentazolylpyridine and its Derivatives as the Precursors of N5ˉ ion
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School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology , Nanjing 210094, China

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    摘要:

    高能五唑离子盐的合成是含能材料领域的研究热点,五唑阴离子的制备是合成高能五唑离子盐的关键步骤。为了拓宽五唑阴离子的来源,寻求稳定性更好,性能更优的五唑阴离子前体,采用密度泛函理论计算研究了3-五唑基吡啶及其衍生物的桥连C—N键和五唑环的稳定性。结果表明:除—OH、—OMe、—N(Me)2对位取代物外,3-五唑基吡啶及其—NO2、—CN、—NF2对位取代,—NO2、—CN、—NF2、—OH、—OMe、—N(Me)2间位取代,—NO2、—CN、—NF2、—OH、—OMe、—N(Me)2对位和间位双取代物的桥连C—N键断裂所需的能量Ea1均小于苯基五唑,说明这些化合物比苯基五唑更易于得到五唑阴离子。—OMe、—N(Me)2对位取代,—OMe、—N(Me)2间位和对位双取代物的五唑环破裂的能垒Ea2与苯基五唑相当,说明这些化合物的五唑环具有较好的稳定性。—N(Me)2间位取代物的Ea1Ea2的差值ΔE最小,说明该化合物在切断桥连C—N键获得N5ˉ离子过程中,最易维持五唑环的稳定。相比于苯基五唑,—N(Me)2间位取代和双取代的3-五唑基吡啶具有较低的ΔEa1、较高的ΔEa2和较低的ΔE,说明其具有替代苯基五唑作为五唑阴离子前体的潜力。

    Abstract:

    The preparations of high-energy pentazolate salts is a research hotspot in the field of energetic materials. The preparation of pentazolate anion is a key step in the preparations of high-energy pentazolate salts. However, as the important precursors for pentazolate anion, the stability of existing arylpentazoles is generally not high. In order to develop new precursors of pentazolate anion with better properties, 18 substituted derivatives of PyN5 with the electron-withdrawing and electron-donating groups, i.e., R-PyN5 (R=-NO2, -CN, -NF2, -OH, -OMe, -N(Me)2), were designed and studied by using the density functional theory method. The bond dissociation energy(EBD), and the activation energy(Ea1) of the bridged C—N bond and the activation energy(Ea2) of the cracking of the N5 ring were calculated, and the stability of the bridged C—N bond and pentazolate ring were discussed. Ea1 of all molecules is smaller than EBD, indicating that the breakage of the bridged C—N bond is more likely to follow the path 2 rather than path 1. Ea2 of all molecules is smaller than Ea1, indicating that the stability of the N5 ring is the key factor to determine the stability of the arylpentazoles. Compared with PhN5, —N(Me)2 meta-substituted and bis-substituted compounds have lower Ea1, higher Ea2 and lower ΔE Ea2Ea1). Therefore,—N(Me)2 meta-substituted and bis-substituted compounds are the most potential precursors of N5ˉ ion for replacing PhN5.

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引用本文

袁万里,江毕涛,章冲,等.3-五唑基吡啶及其衍生物作为N5离子前体的理论研究[J].含能材料, 2022, 30(12):1237-1244. DOI:10.11943/CJEM2021336.
YUAN Wan-li, JIANG Bi-tao, ZHANG Chong, et al. A Theoretical Study on 3-Pentazolylpyridine and its Derivatives as the Precursors of N5ˉ ion[J]. Chinese Journal of Energetic Materials, 2022, 30(12):1237-1244. DOI:10.11943/CJEM2021336.

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  • 收稿日期: 2021-12-15
  • 最后修改日期: 2022-02-26
  • 录用日期: 2022-01-29
  • 在线发布日期: 2022-02-17
  • 出版日期: 2022-12-25