Li Lulin, Zhang Jiawei, Li Butong, Yi Guobin, Wang Taoyu, Peng Yanhong
Guangdong Provincial Laboratory of Chemistry and Fine Chemical Engineering Jieyang Center, Jieyang, 522000, China.
School of Advanced Manufacturing, Guangdong University of Technology, Jieyang, 510006, China.
J Mol Model. 2024 Mar 14;30(4):104. doi: 10.1007/s00894-024-05899-z.
The nitro group was introduced into the nitrogen heterocycle of 1H-benzotriazole to design a total of 31 derivatives. To estimate the thermal stability of these derivatives, the heat of formation (HOF) is calculated based on the isodesmic reaction. The bond dissociation energy (BDE) was also predicted based on the homolytic reaction to further evaluate the dynamic stability. To evaluate the possibility of utilizing as high energy density compounds (HEDCs), the detonation parameters including the detonation pressure (P), detonation velocity (D), and explosive heat (Q) are predicted by taking advantage of the Kamlet-Jacobs empirical equation. To measure the sensitivity to impact, both the characteristic height (H) and free space in crystal (∆V) are considered in this paper. Based on our calculations, D-series and E are found to be the candidates for HEDCs.
The Gaussian 09 software package was used in this paper. The B3PW91 hybrid function with the 6-311 + G(d,p) basis set was chosen to perform the structural optimization, frequency analysis, heat of formation, and bond dissociation energy. The detonation parameters were calculated following the Kamlet-Jacobs equation.
将硝基引入1H-苯并三唑的氮杂环中,共设计了31种衍生物。为了评估这些衍生物的热稳定性,基于等键反应计算生成热(HOF)。还基于均裂反应预测键解离能(BDE),以进一步评估动力学稳定性。为了评估用作高能量密度化合物(HEDC)的可能性,利用Kamlet-Jacobs经验方程预测爆轰参数,包括爆轰压力(P)、爆轰速度(D)和爆热(Q)。为了测量冲击敏感性,本文考虑了特征高度(H)和晶体中的自由空间(∆V)。基于我们的计算,发现D系列和E是高能量密度化合物的候选物。
本文使用高斯09软件包。选择具有6-311+G(d,p)基组的B3PW91杂化函数进行结构优化、频率分析、生成热和键解离能的计算。根据Kamlet-Jacobs方程计算爆轰参数。