Zhang Ming, Zhao Fengqi, An Ting, Yang Yanjing, Li Hui, Pan Qing, Wang Xiaohong, Jiang Zhoufeng
Science and Technology on Combustion and Explosion Laboratory, Xi'an Modern Chemistry Research Institute, Xi'an 710065, China.
J Phys Chem A. 2020 Mar 5;124(9):1673-1681. doi: 10.1021/acs.jpca.9b09711. Epub 2020 Feb 20.
Thermal decomposition performance of the insensitive energetic compound 1,1-diamino-2,2-dintroethene (FOX-7) is essential for its application in the field of solid propellants. This study seeks to reveal the catalytic effects of reduced graphene oxide-bimetallic oxide nanocomposites (rGO-MFeO, M = Ni, Co, and Zn) on the thermal decomposition, kinetic parameters, and pyrolysis mechanism of energetic FOX-7. The results showed that the catalytic activities of the bimetallic iron oxide (NiFeO, CoFeO, and ZnFeO) increased obviously after anchoring on the surface of graphene. Particularly, the rGO-NiFeO nanocomposite possessed the best catalytic activity for FOX-7 thermal decomposition. The high thermal decomposition peak temperature () and the apparent activation energy () of FOX-7 were decreased by 57.4 °C and 54.27 kJ mol after mixing with the rGO-NiFeO nanocomposite. The excellent catalytic activity of rGO-NiFeO can be attributed to the synergistic interaction between rGO and NiFeO, which is beneficial for the reduction of activation energy and a high thermal decomposition peak temperature of FOX-7. This study is helpful for the rational design of a solid propellant containing FOX-7 and to understand the thermal decomposition kinetics and mechanism of FOX-7.
钝感含能化合物1,1-二氨基-2,2-二硝基乙烯(FOX-7)的热分解性能对其在固体推进剂领域的应用至关重要。本研究旨在揭示还原氧化石墨烯-双金属氧化物纳米复合材料(rGO-MFeO,M = Ni、Co和Zn)对含能材料FOX-7的热分解、动力学参数及热解机理的催化作用。结果表明,双金属氧化铁(NiFeO、CoFeO和ZnFeO)锚定在石墨烯表面后催化活性明显增强。特别是,rGO-NiFeO纳米复合材料对FOX-7热分解具有最佳的催化活性。与rGO-NiFeO纳米复合材料混合后,FOX-7的高热分解峰温度()和表观活化能()分别降低了57.4℃和54.27 kJ·mol。rGO-NiFeO优异的催化活性可归因于rGO与NiFeO之间的协同相互作用,这有利于降低FOX-7的活化能和提高其热分解峰温度。本研究有助于合理设计含FOX-7的固体推进剂,并了解FOX-7的热分解动力学和机理。