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基于四唑骨架的富氮含能材料的最新进展。

Recent Progress on Nitrogen-Rich Energetic Materials Based on Tetrazole Skeleton.

机构信息

Hunan Nanling Industry Explosive Material Co., Ltd., Changsha, 410013, China.

State Key Laboratory of Chemo/Biosensing and Chemometrics, Advanced Catalytic Engineering Research Center of the Ministry of Education, College of Chemistry and Chemical Engineering, Hunan University, Changsha, 410082, China.

出版信息

Top Curr Chem (Cham). 2023 Aug 23;381(5):25. doi: 10.1007/s41061-023-00435-8.

Abstract

Development of nitrogen-rich energetic materials has gained much attention because of their remarkable properties including large nitrogen content and energy density, good thermal stability, low sensitivity, good energetic performance, environmental friendliness and so on. Tetrazole has the highest nitrogen and highest energy contents among the stable azoles. The incorporation of diverse explosophoric groups or substituents into the tetrazole skeleton is beneficial to obtain high-nitrogen energetic materials having excellent energetic performance and suitable sensitivity. In this review, the development of high-nitrogen energetic materials based on tetrazole skeleton is highlighted. Initially, the property and utilization of nitrogen-rich energetic materials are presented. After showing the advantage of the tetrazole skeleton, the high-nitrogen energetic materials based on tetrazole are classified and introduced in detail. Based on different types of energetic materials (EMs), the synthesis and properties of nitrogen-rich energetic materials based on mono-, di-, tri- and tetra-tetrazole are summarized in detail.

摘要

富氮含能材料因其具有含氮量高、能量密度大、热稳定性好、感度低、能量性能优良、环境友好等显著特点,受到了广泛关注。在稳定的唑类化合物中,四唑具有最高的氮含量和最高的能量含量。将不同的爆炸基团或取代基引入四唑骨架有利于获得具有优良能量性能和合适感度的高氮含能材料。本文综述了基于四唑骨架的高氮含能材料的发展。首先介绍了富氮含能材料的性能和应用。在展示了四唑骨架的优势之后,详细分类介绍了基于四唑的高氮含能材料。根据不同类型的含能材料(EMs),详细总结了基于单、二、三、四唑的富氮含能材料的合成和性能。

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