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-NH₂ 和 -NO₂ 取代的二吡啶的理论研究。

Theoretical studies of -NH₂ and -NO₂ substituted dipyridines.

机构信息

Department of Chemistry, Nanjing University of Science and Technology, Nanjing 210094, China.

出版信息

J Mol Model. 2012 Oct;18(10):4639-47. doi: 10.1007/s00894-012-1460-x. Epub 2012 May 31.

Abstract

In this work, the experimental synthesized bipyridines 3,3'-Dinitro-2,2'-bipyridine (DNBPy), 3,3'-Dinitro-2,2'-bipyridine-1,1'-dioxide (DNBPyO), and (3-Nitro-2-pyridyl)(5-nitro-2-pyridyl) amine (NPyA), and a set of designed dipyridines that have similar frameworks but different linkages and substituents with NPyA were studied theoretically at the B3LYP/6-31G* level of density functional theory. The gas-phase heats of formation were predicted based on the isodesmic reactions and the condensed-phase heats of formation and heats of sublimation were estimated in the framework of the Politzer approach. The crystal densities have been computed from molecular packing. Results show that this method gives a good estimation of density in comparison with the available experimental data for DNBPy, DNBPyO, and NPyA. The predicted detonation velocities and pressures indicate that the performance of dipyridines linked with -O-, -NH-, or -CH₂- bridges have not been improved compared with that of the directly linked dipyridines, but all derivatives have better detonation properties than DNBPy, DNBPyO, and NPyA because of the presence of more nitro groups. An analysis of the bond dissociation energies (BDEs) or the impact sensitivity (h₅₀) suggests that introduction of different bridges but not substituents has little influence on thermal stability. The calculated h₅₀ may be more reliable than BDE for predicting stability. Four bridged bipyridines have quite good detonation performance and low sensitivity.

摘要

在这项工作中,实验合成的联吡啶 3,3'-二硝基-2,2'-联吡啶(DNBPy)、3,3'-二硝基-2,2'-联吡啶-1,1'-二氧化物(DNBPyO)和(3-硝基-2-吡啶基)(5-硝基-2-吡啶基)胺(NPyA),以及一组具有相似框架但不同键合和取代基的设计联吡啶与 NPyA 进行了理论研究,在密度泛函理论的 B3LYP/6-31G*水平上。根据等电子反应预测了气相生成热,并在 Politzer 方法的框架内估算了凝聚相生成热和升华热。从分子堆积计算了晶体密度。结果表明,与可用的实验数据相比,该方法对密度的估计较好,用于 DNBPy、DNBPyO 和 NPyA。预测的爆轰速度和压力表明,与直接连接的联吡啶相比,连接-O-、-NH-或-CH₂-桥的联吡啶的性能没有得到改善,但由于存在更多的硝基,所有衍生物的爆轰性能都优于 DNBPy、DNBPyO 和 NPyA。对键离解能(BDE)或撞击感度(h₅₀)的分析表明,引入不同的桥而不是取代基对热稳定性的影响很小。计算的 h₅₀ 可能比 BDE 更可靠地预测稳定性。四个桥联联吡啶具有相当好的爆轰性能和低敏感性。

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