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在具有氰基、异氰基和硝酸酯基的1,3-双高戊搭烯衍生物中寻找高能量密度化合物。

Looking for high energy density compounds among 1,3-bishomopentaprismane derivatives with CN, NC, and ONO(2) groups.

作者信息

Qiu Limei, Gong Xuedong, Wang Guixiang, Zheng Jian, Xiao Heming

机构信息

Department of Chemistry, Nanjing University of Science and Technology, Nanjing 210094, People's Republic of China.

出版信息

J Phys Chem A. 2009 Mar 19;113(11):2607-14. doi: 10.1021/jp8103408.

Abstract

The paper concentrates on the "molecular design" of 1,3-bishomopentaprismane (BPP) derivatives with CN, NC, and ONO(2) groups as high energy density compounds (HEDCs). The heats of formation (HOFs), densities (rho), detonation velocities (D), and pressures (P) for a series of BPP derivatives, as well as their thermal stabilities, were calculated using density functional theory. The HOFs are high and increase with the substituted number (n) for BPP derivatives with CN and NC groups while are low and decrease with n for derivatives with ONO(2) group. D and P were estimated by using modified Kamlet-Jacobs equations based on the calculated HOFs and rho. The BPP derivatives with ONO(2) groups have excellent energetic properties to be HEDCs while the other two kinds of derivatives have relatively low rho, D, and P, revealing that CN and NC groups are not ideal substituents in the construction of HEDCs. The trigger bond in the pyrolysis process for CN and NC derivatives is the C-C bond in the skeleton, and these derivatives all have good thermal stability. In comparison, the trigger bond in the pyrolysis process for ONO(2) derivatives is the O-NO(2) bond, and these compounds are medium-stable. Taking both energetic properties and thermal stability into account, BPP derivatives with 6-8 ONO(2) groups are recommended as potential candidates of HEDCs. These results would provide basic information for the further studies of the title compounds.

摘要

本文重点研究了含氰基(CN)、异氰基(NC)和硝酸酯基(ONO₂)的1,3-双高戊搭烯(BPP)衍生物作为高能量密度化合物(HEDC)的“分子设计”。使用密度泛函理论计算了一系列BPP衍生物的生成热(HOF)、密度(ρ)、爆速(D)和爆压(P),以及它们的热稳定性。对于含CN和NC基团的BPP衍生物,其HOF较高且随取代数(n)增加,而对于含ONO₂基团的衍生物,其HOF较低且随n减小。基于计算得到的HOF和ρ,使用改进的Kamlet-Jacobs方程估算了D和P。含ONO₂基团的BPP衍生物具有优异的高能特性,可作为HEDC,而其他两类衍生物的ρ、D和P相对较低,这表明CN和NC基团在构建HEDC时不是理想的取代基。CN和NC衍生物热解过程中的引发键是骨架中的C-C键,这些衍生物都具有良好的热稳定性。相比之下,ONO₂衍生物热解过程中的引发键是O-NO₂键,这些化合物具有中等稳定性。综合考虑能量特性和热稳定性,推荐含6-8个ONO₂基团的BPP衍生物作为HEDC的潜在候选物。这些结果将为进一步研究标题化合物提供基础信息。

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