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通过在高能金属有机框架中修饰富氮配体来调节能量性能。

Modulating energetic performance through decorating nitrogen-rich ligands in high-energy MOFs.

作者信息

Cao Senni, Ma Xiufang, Ma Xiaohui, Cen Peipei, Wu Yuewei, Yang Jinhui, Liu Xiangyu, Xie Gang, Chen Sanping

机构信息

State Key Laboratory of High-efficiency Utilization of Coal and Green Chemical Engineering, National Demonstration Center for Experimental Chemistry Education, College of Chemistry and Chemical Engineering, Ningxia University, Yinchuan 750021, China.

出版信息

Dalton Trans. 2020 Feb 21;49(7):2300-2307. doi: 10.1039/c9dt04803k. Epub 2020 Feb 4.

Abstract

In the presence of different nitrogen-rich ligands, two energetic MOFs with formulas [Ag(tza)] (1) and [Ag(atza)] (2) (Htza = tetrazole-1-acetic acid and Hatza = (5-amino-1H-tetrazole-1-yl) acetic acid) were successfully synthesized and characterized. X-ray single crystal structure analysis shows that both 1 and 2 have 2D layer-like topologies. The experimental and theoretical evaluations reveal the promising properties of both energetic compounds, such as prominent heats of detonation, high thermal stabilities, good sensitivities and excellent detonation performances. In contrast to 1, interestingly, the introduction of the amino group in 2 leads to various coordination modes of the ligands and different stacking patterns of the frameworks, resulting in the observation of the shorter Ag-O, Ag-Ag, C-N, N-N, and N[double bond, length as m-dash]N bond lengths in 2. Consequently, 2 features superior heats of detonation and thermostability compared to 1. The nonisothermal thermokinetic parameters are obtained by using the Kissinger and Ozawa methods, while the standard molar enthalpies of formation are calculated from the determination of constant volume combustion energies. In addition, both compounds were explored as practical additives to promote the thermal decomposition of ammonium perchlorate (AP). This work may provide an effective approach for manipulating the energetic properties and thermostability of high-energy compounds via the perturbation of energetic groups.

摘要

在不同富氮配体存在的情况下,成功合成并表征了两种化学式分别为[Ag(tza)](1)和[Ag(atza)](2)的含能金属有机框架材料(Htza = 四唑-1-乙酸,Hatza = (5-氨基-1H-四唑-1-基)乙酸)。X射线单晶结构分析表明,1和2均具有二维层状拓扑结构。实验和理论评估揭示了这两种含能化合物的良好性能,如显著的爆热、高的热稳定性、良好的感度和优异的爆轰性能。有趣的是,与1相比,2中氨基的引入导致配体的多种配位模式和框架的不同堆积模式,使得在2中观察到较短的Ag - O、Ag - Ag、C - N、N - N和N=N键长。因此,与1相比,2具有更高的爆热和热稳定性。通过基辛格法和小泽法获得非等温热动力学参数,同时根据定容燃烧能的测定计算标准摩尔生成焓。此外,还研究了这两种化合物作为促进高氯酸铵(AP)热分解的实用添加剂。这项工作可能为通过高能基团的扰动来调控高能化合物的含能性能和热稳定性提供一种有效方法。

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