Wang Ruibin, Zhang Lichen, Li Xiaodong, Zhu Lixiang, Xiang Zilong, Xu Jin, Xue Dichang, Deng Zitong, Su Xing, Zou Meishuai
School of Materials Science and Engineering, Beijing Institute of Technology, No. 5 South Zhongguancun Street, Haidian, Beijing, 100081, China.
Adv Sci (Weinh). 2024 Jul;11(26):e2401564. doi: 10.1002/advs.202401564. Epub 2024 May 5.
Surface modification is frequently used to solve the problems of low combustion properties and agglomeration for aluminum-based fuels. However, due to the intrinsic incompatibility between the aluminum powder and the organic modifiers, the surface coating is usually uneven and disordered, which significantly deteriorates the uniformity and performances of the Al-based fuels. Herein, a new approach of monolayer nano-vesicular self-assembly is proposed to prepare high-performance Al fuels. Triblock copolymer G-F-G is produced by glycidyl azide polymer (GAP) and 2,2'-(2,2,3,3,4,5,5-Octafluorohexane-1,6-diyl) bis (oxirane) (fluoride) ring-open addition reaction. By utilizing G-F-G vesicular self-assembly in a special solvent, the nano-sized vesicles are firmly adhered to the surface of Al powder through the long-range attraction between the fluorine segments and Al. Meanwhile, the electrostatic repulsion between vesicles ensures an extremely thin coating thickness (≈15 nm), maintaining the monolayer coating structure. Nice ignition, combustion, anti-agglomeration, and water-proof properties of Al@G-F-G(DMF) are achieved, which are superior among the existing Al-based fuels. The derived Al-based fuel has excellent comprehensive properties, which can not only inspire the development of new-generation energetic materials but also provide facile but exquisite strategies for exquisite surface nanostructure construction via ordered self-assembly for many other applications.
表面改性常用于解决铝基燃料燃烧性能低和团聚的问题。然而,由于铝粉与有机改性剂之间存在内在的不相容性,表面涂层通常不均匀且无序,这显著降低了铝基燃料的均匀性和性能。在此,提出了一种单层纳米囊泡自组装的新方法来制备高性能铝燃料。三嵌段共聚物G-F-G由缩水甘油叠氮聚合物(GAP)与2,2'-(2,2,3,3,4,5,5-八氟己烷-1,6-二基)双(环氧乙烷)(氟化物)开环加成反应制得。通过在特殊溶剂中利用G-F-G囊泡自组装,纳米级囊泡通过氟链段与铝之间的长程吸引力牢固地附着在铝粉表面。同时,囊泡之间的静电排斥确保了极薄的涂层厚度(≈15纳米),维持了单层涂层结构。Al@G-F-G(DMF)实现了良好的点火、燃烧、抗团聚和防水性能,在现有铝基燃料中表现优异。所得到的铝基燃料具有优异的综合性能,不仅可以推动新一代含能材料的发展,还可以为通过有序自组装构建精细表面纳米结构提供简便而精妙的策略,用于许多其他应用。