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基于 BTF 的共晶的理论研究:外电场的影响。

Theoretical study on BTF-based cocrystals: effect of external electric field.

机构信息

College of Safety Engineering and Engineering, Nanjing Tech University, Nanjing, 210009, China.

Wisdom Pharmaceutical Co., Ltd, Nantong, China.

出版信息

J Mol Model. 2022 Jun 10;28(7):185. doi: 10.1007/s00894-022-05178-9.

Abstract

The external electric field plays an important role in the sensitivity of cocrystal energetic materials. To reveal the influence of external electric field on benzotrifuroxan/2,4,6-trinitroaniline (BTF/TNA), benzotrifuroxan/trinitroazetidine (BTF/TNAZ), benzotrifuroxan/1,3,5-trinitrobenzene (BTF/TNB), and benzotrifuroxan/trinitrotoluene (BTF/TNT) cocrystals' sensitivity, atoms in molecules (AIM), frontier molecular orbitals, nitro group charges (Q), electron density values (ρ), electrostatic surface potentials (ESPs), bond dissociation energy (E), and interaction energy (E) of the C-NO bond were calculated by density functional theory at M062X-D3/ma-def2 TZVPP and B3LYP-D3/6-311 + G (d, p) levels in this article. The results indicate that both negative and positive electric fields reduce the energy gap of the BTF-based cocrystals, and BTF/TNAZ is the most sensitive cocrystal among the four cocrystals. For BTF/TNA and BTF/TNB, the E and the negative charge of the nitro group decreases with increasing positive electric field strength, the V increases with positive electric field strength, and the sensitivity of cocrystal eventually tends to increase under the positive electric field. For BTF/TNAZ and BTF/TNT, the E and the negative charge of the nitro group decrease with increasing negative electric field strength, the V increases with negative electric field strength, and the sensitivity of cocrystal eventually tends to increase under the negative electric field. Finally, the variation in bond length, nitro charge, and AIM electron density values are well correlated with the strengths of the external electric field.

摘要

外电场在共晶含能材料的感度中起着重要作用。为了揭示外电场对苯并三呋咱/2,4,6-三硝基苯胺(BTF/TNA)、苯并三呋咱/三硝基吖啶(BTF/TNAZ)、苯并三呋咱/1,3,5-三硝基苯(BTF/TNB)和苯并三呋咱/三硝基甲苯(BTF/TNT)共晶感度的影响,本文采用密度泛函理论(DFT)在 M062X-D3/ma-def2 TZVPP 和 B3LYP-D3/6-311 + G(d,p)水平上计算了分子中的原子(AIM)、前沿分子轨道、硝基电荷(Q)、电子密度值(ρ)、静电表面电势(ESP)、键离解能(E)和 C-NO 键的相互作用能(E)。结果表明,正、负电场均降低了基于 BTF 的共晶的能隙,并且在这四个共晶中,BTF/TNAZ 是最敏感的共晶。对于 BTF/TNA 和 BTF/TNB,随着正电场强度的增加,E 和硝基的负电荷减小,V 随着正电场强度的增加而增加,共晶的感度最终在正电场下趋于增加。对于 BTF/TNAZ 和 BTF/TNT,随着负电场强度的增加,E 和硝基的负电荷减小,V 随着负电场强度的增加而增加,共晶的感度最终在负电场下趋于增加。最后,键长、硝基电荷和 AIM 电子密度值的变化与外电场强度密切相关。

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