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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Effects of closo-icosahedral periodoborane salts on hypergolic reactions of 70% H2O2 with energetic ionic liquids
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Effects of closo-icosahedral periodoborane salts on hypergolic reactions of 70% H2O2 with energetic ionic liquids

机译:蛋白酶二核酮硼烷盐对70%H2O2具有能量离子液体的高压反应的影响

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A number of energetic ionic liquids (EILs) have been reported as promising hydrazine-replacement fuels for hypergolic rocket propulsion. However, most of these EILs were ignited using corrosive and hazardous concentrated fuming nitric acid. Very significant efforts were recently made to utilize "rocket grade" highly concentrated H2O2 (90%) as a "green" alternative to fuming nitric acid and N2O4 oxidizers. Although "rocket grade" H2O2 is more challenging to use and less safe for storage than commercially available H2O2 (70%), the latter is not considered as a viable oxidizer for hypergolic propulsion. In this work, we focused on the development of novel iodine-rich promoters, capable of initiating hypergolic ignition reactions between a typical EIL fuel - 3-ethyl-1-methyl-1H-imidazol-3-ium cyanotrihydroborate - and H2O2. Among the prepared and evaluated promoters, the top performing [FcCH(2)NEtMe(2)(+)](2)[B12I122-] compound 5 showed ignition delay times of 45 ms in the reaction of the tested EIL with H2O2 (70%) and 17 ms with H2O2 (95%). We believe that these findings provide a platform for the development and utilization of commercially available H2O2 as a potential "green" oxidizer for rocket propulsion.
机译:据报道,许多能量离子液体(EIL)作为高压凝固火箭推进的有前途的肼替代燃料。然而,这些EIL中的大多数都是使用腐蚀性和危险的浓缩的熏蒸硝酸点燃。最近努力利用“火箭级”高度浓缩的H2O2(& 90%)作为熏蒸硝酸和N2O4氧化剂的“绿色”替代品。虽然“火箭级”H 2 O 2更具挑战性,但比市售的H 2 O 2(70%)更具挑战性,并且对储存不太安全,后者不被认为是用于高胆管推进的活氧化剂。在这项工作中,我们专注于新型富含碘的启动子的发展,能够在典型的EIL燃料 - 3-乙基-1-甲基-1H-咪唑-3-Ium cyanotrihydroborate - 和H 2 O 2之间启动典型的EIL燃料 - 3-乙基-1-甲基-1H-Imidazol-3-Ium之间的高压点火反应。在制备和评估的启动子中,顶部进行[FCCH(2)NetMe(2)(+)](2)[B12I122-]化合物5显示出测试的EIL与H 2 O 2的反应中的点火延迟时间为45ms(70 %)和17ms,H 2 O 2(95%)。我们认为,这些发现提供了开发和利用市售H2O2作为火箭推进的潜在“绿色”氧化剂的平台。

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