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嵌入石墨烯基配合物作为催化剂的核壳结构Al@CL-20复合材料的制备与反应活性

Preparation and Reactivity of Core-Shell Al@CL-20 Composites Embedded with Graphene-Based Complexes as Catalysts.

作者信息

Feng Zhiyuan, Yu Minghui, Xu Ruixuan, Pu Rui, Nie Hongqi, Yan Qi-Long

机构信息

National Key Laboratory of Solid Rocket Propulsion, Northwestern Polytechnical University, Xi'an 710072, China.

出版信息

Langmuir. 2024 May 14;40(19):10228-10239. doi: 10.1021/acs.langmuir.4c00597. Epub 2024 May 1.

Abstract

Incomplete combustion of Al in solid propellants can be effectively resolved by coating of an oxidizer at the microscale. In this paper, Al@CL-20 composites with polydopamine as the interfacial layer were prepared using this strategy. The structure, heat of reaction, thermal decomposition properties, and combustion performances of these composites under the effects of graphene oxide (GO) and graphene-based carbohydrazide complexes (GO-CHZ-M, M = Co, Ni) have been comprehensively investigated. The experimental results show that the heat of reaction of Al@CL-20 is 6482 J g, which is 561 J g higher than that of the corresponding mechanical mixture. The presence of GO-CHZ-Co can further increase the heat of reaction of Al@CL-20 to 6729 J g with a decreased activation energy by about 54.8%. Under the synergistic effect of interfacial control and GO-CHZ-M, the ignition delay time of Al@CL-20-Co decreases from 5.1 to 4.2 ms. Besides, the of the combustion condensed products (CCPs) decreased from 5.62 to 4.33 μm, indicating the combustion efficiency of Al is greatly improved.

摘要

在固体推进剂中,铝的不完全燃烧可通过在微观尺度上包覆氧化剂来有效解决。本文采用该策略制备了以聚多巴胺为界面层的Al@CL-20复合材料。全面研究了这些复合材料在氧化石墨烯(GO)和基于石墨烯的 carbohydrazide 配合物(GO-CHZ-M,M = Co、Ni)作用下的结构、反应热、热分解性能和燃烧性能。实验结果表明,Al@CL-20的反应热为6482 J g,比相应的机械混合物高561 J g。GO-CHZ-Co的存在可进一步将Al@CL-20的反应热提高到6729 J g,同时活化能降低约54.8%。在界面控制和GO-CHZ-M的协同作用下,Al@CL-20-Co的点火延迟时间从5.1 ms降至4.2 ms。此外,燃烧凝聚产物(CCPs)的尺寸从5.62 μm减小到4.33 μm,表明铝的燃烧效率大大提高。

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