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基于超分子自组装的协同催化效应构建疏水性高氯酸铵用于同步催化高氯酸铵热分解和铝燃烧

Construction of Hydrophobic Ammonium Perchlorate with Synergistic Catalytic Effect Based on Supramolecular Self-Assembly for Synchronously Catalyzing the Thermal Decomposition of Ammonium Perchlorate and the Combustion of Aluminum.

机构信息

School of Environment and Safety Engineering, North University of China, Taiyuan 030051, Shanxi, China.

Institute of Rehabilitation Engineering, School of Rehabilitation Medicine, Binzhou Medical University, Yantai 264003, China.

出版信息

Langmuir. 2023 Jul 11;39(27):9514-9525. doi: 10.1021/acs.langmuir.3c01056. Epub 2023 Jun 26.

Abstract

Ammonium perchlorate (AP), as an important additive component of composite propellants, is critical to the combustion performance of propellants. Herein, AP@1,1,2,2-perfluorodecyltrichlorosilane (AP@PF) was prepared by establishing a tannic acid-iron ion (TA-Fe) supramolecular self-assembly layer on the AP surface and connecting the 1,1,2,2-perfluorodecyltrichlorosilane interfacial layer. Results demonstrate that TA-Fe and 1,1,2,2-perfluorodecyltrichlorosilane are uniformly bound to the surface layer of AP. AP@PF has a lower high-temperature thermal decomposition peak compared to AP. Meanwhile, the exothermic values of low-temperature thermal decomposition (338 J/g) and high-temperature thermal decomposition (597 J/g) of AP@PF are significantly higher than those of AP. In addition, AP@PF exhibits different surface interfacial properties, such as floating on the water surface and exhibiting a static contact angle of 105° on water. AP@PF shows almost no moisture absorption after aging in humid air for 30 days. The exothermic value of the mixture of AP@PF and aluminum powder (156 J/g) is significantly higher than that of the mixture of AP and aluminum (54 J/g), and the mixture of AP@PF and aluminum powder exhibits a higher calorific value and a stronger emission spectrum. Finally, the synergistic catalytic mechanism of AP@PF on the thermal decomposition of AP and the combustion of aluminum powder is also discussed.

摘要

过氯酸铵(AP)作为复合推进剂的重要添加剂成分,对推进剂的燃烧性能至关重要。在此,通过在 AP 表面建立单宁酸-铁离子(TA-Fe)超分子自组装层并连接 1,1,2,2-全氟癸基三氯硅烷界面层,制备了 AP@1,1,2,2-全氟癸基三氯硅烷(AP@PF)。结果表明,TA-Fe 和 1,1,2,2-全氟癸基三氯硅烷均匀地结合在 AP 的表面层上。AP@PF 的高温热分解峰比 AP 低。同时,AP@PF 的低温热分解(338 J/g)和高温热分解(597 J/g)的放热值明显高于 AP。此外,AP@PF 表现出不同的表面界面性质,如在水面上漂浮和在水面上呈现 105°的静态接触角。AP@PF 在潮湿空气中老化 30 天后几乎没有吸湿。AP@PF 和铝粉混合物(156 J/g)的放热值明显高于 AP 和铝混合物(54 J/g),AP@PF 和铝粉混合物具有更高的热值和更强的发射光谱。最后,还讨论了 AP@PF 对 AP 热分解和铝粉燃烧的协同催化机制。

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