三(3-硝基戊烷-2,4-迪奥纳托-κ 2o,O ')配合物作为一种新型高能材料:理论与实验考虑

Danijela S. Kretić, I. Veljković, D. Veljković
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引用次数: 0

摘要

降低对高能材料爆轰的敏感性是众多理论和实验研究的最终目标。众所周知,分子表面中心区域以上的正静电势与对高能分子爆炸的高灵敏度有关。配位化合物提供了额外的结构特征,可用于调整这类HEM化合物的静电电位值和对爆炸的敏感性。通过过渡金属原子和配体的精心组合,可以实现螯合配合物表面静电电位值的微调。本文将密度泛函理论计算与实验数据相结合,评价了Cr(III)、Mn(III)、Fe(III)和Co(III)的三(3-硝基戊烷-2,4-dionato-κ 2o,O ')(硝基三(乙酰丙酮))配合物的高能性质。C-NO2键的键解离能(BDE)和分子静电势(MEP)分析表明,这些化合物可能具有HEM分子的作用。红外光谱分析和Co(AcAc-NO2)3配合物在明火中的引发证实了这些化合物作为高能分子。Co(AcAc-NO2)3配合物的燃烧热为14133 J/g,证实了该化合物的高能性质。结果还表明,螯合环的加入可以作为控制高能配位化合物爆轰灵敏度的新工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tris(3-nitropentane-2,4-dionato-κ2 O,O′) Complexes as a New Type of Highly Energetic Materials: Theoretical and Experimental Considerations
Decreasing the sensitivity towards detonation of high-energy materials (HEMs) is the ultimate goal of numerous theoretical and experimental studies. It is known that positive electrostatic potential above the central areas of the molecular surface is related to high sensitivity towards the detonation of high-energy molecules. Coordination compounds offer additional structural features that can be used for the adjustment of the electrostatic potential values and sensitivity towards detonation of this class of HEM compounds. By a careful combination of the transition metal atoms and ligands, it is possible to achieve a fine-tuning of the values of the electrostatic potential on the surface of the chelate complexes. Here we combined Density Functional Theory calculations with experimental data to evaluate the high-energy properties of tris(3-nitropentane-2,4-dionato-κ2 O,O′) (nitro-tris(acetylacetonato)) complexes of Cr(III), Mn(III), Fe(III), and Co(III). Analysis of the Bond Dissociation Energies (BDE) of the C-NO2 bonds and Molecular Electrostatic Potentials (MEP) showed that these compounds may act as HEM molecules. Analysis of IR spectra and initiation of the Co(AcAc-NO2)3 complex in the open flame confirmed that these compounds act as high-energy molecules. The measured heat of combustion for the Co(AcAc-NO2)3 complex was 14,133 J/g, which confirms the high-energy properties of this compound. The results also indicated that the addition of chelate rings may be used as a new tool for controlling the sensitivity towards the detonation of high-energy coordination compounds.
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来源期刊
Precision Chemistry
Precision Chemistry 精密化学技术-
CiteScore
0.80
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期刊介绍: Chemical research focused on precision enables more controllable predictable and accurate outcomes which in turn drive innovation in measurement science sustainable materials information materials personalized medicines energy environmental science and countless other fields requiring chemical insights.Precision Chemistry provides a unique and highly focused publishing venue for fundamental applied and interdisciplinary research aiming to achieve precision calculation design synthesis manipulation measurement and manufacturing. It is committed to bringing together researchers from across the chemical sciences and the related scientific areas to showcase original research and critical reviews of exceptional quality significance and interest to the broad chemistry and scientific community.
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