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基于硝叉丙腈的离子液体及其作为富燃料的潜在应用。

Nitrocyanamide-based ionic liquids and their potential applications as hypergolic fuels.

机构信息

Department of Chemistry, University of Idaho, Moscow, ID 83844-2343, USA.

出版信息

Chemistry. 2010 May 17;16(19):5736-43. doi: 10.1002/chem.200902651.

Abstract

Nitrocyanamide ionic liquids with substituted imidazolium, guanidinium, and tetrazolium cations have been synthesized and fully characterized. Aminoguanidinium nitrocyanamide (7) crystallizes in the triclinic system P1. The results obtained from theoretical calculations based on 7 are consistent with the single-crystal structure data. These ionic liquids exhibit desirable physicochemical properties, such as low melting points and good thermal stabilities. Furthermore, they are all impact insensitive materials. Their energetic performances, including heats of formation, detonation pressures, and detonation velocities, were studied by a combination of theoretical and empirical calculations. The ionic liquids 1-4 have large liquid ranges and low viscosities. They were shown to be promising candidates as hypergolic ionic liquids through the combustion tests with 100% HNO(3).

摘要

已经合成并充分表征了具有取代咪唑鎓、胍鎓和四唑鎓阳离子的硝叉氰胺离子液体。氨基胍硝叉氰胺(7)结晶于三斜晶系 P1 中。基于 7 进行的理论计算结果与单晶结构数据一致。这些离子液体表现出理想的物理化学性质,如低熔点和良好的热稳定性。此外,它们都是无撞击感度的材料。通过理论和经验计算的结合,研究了它们的能量性能,包括生成热、爆轰压力和爆轰速度。离子液体 1-4 具有较大的液相范围和较低的粘度。通过与 100% HNO(3) 的燃烧测试,表明它们是有前途的高能离子液体候选物。

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