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Azetidinium-based Hypergolic Ionic Liquids with High Strain Energy

机译:具有高应变能的基于氮氮基高省离子液体

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A class of azetidinium-based hypergolic ionic liquids was synthesized and characterized by 1H and 13CNMR, IR spectroscopies, and electrospray ionization mass spectrometry. The properties of six synthesized ionic liquids were characterized with respect to liquid range (-80-200 8C), density (0.99- 1.05 gcm~(-3)), heat of formation (0.70-2.17 kJg~(-1)), specific impulse (164.0-184.5 s), and ignition delay time (23-130 ms). In order to better understand the relation between ring stains and energy of obtained compounds, the isomers of 9 were also synthesized for comparison. It is interesting to find that, compared with the isomers (9a: 0.41 kJg~(-1), 156.5 s; 9b: 0.36 kJg~(-1), 155.3 s), 9 exhibited a much higher heat of formation (0.78 kJg~(-1)) and specific impulse (164.8 s), which indicates that ring strains play an important role in the performance of energetic compounds. With the highest energetic properties (2.17 kJg~(-1), 184.5 s), 12 has a greater potential to be employed as green propellants.
机译:合成一类基于氮杂丁的高级离子液体,并以1H和13CNMR,IR光谱和电喷雾电离质谱法合成并表征。表征了六个合成离子液体的性能,相对于液体范围(-80-200 8C),密度(0.99-1.05 gcm〜(-3)),形成热(0.70-2.17 kjg〜(-1)),特定的冲动(164.0-184.5 s)和点火延迟时间(23-130 ms)。为了更好地理解环形染色与获得化合物的能量之间的关系,还合成了9的异构体以进行比较。有趣的是,与异构体(9a:0.41 kjg〜(-1),156.5 s; 9b:0.36 kjg〜(-1),155.3 s)相比,9次表现出更高的地层热量(0.78 kjg 〜(-1))和特定的脉冲(164.8 s),这表明环应变在能量化合物的性能中起重要作用。具有最高的能量特性(2.17 kjg〜(-1),184.5 s),12具有更大的用作绿色推进剂的潜力。

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