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氧桥呋咱类含能材料的研究进展
引用本文:苗成才,刘长波,冯晓晶,马英华,朱天兵,马会强,张寿忠.氧桥呋咱类含能材料的研究进展[J].化学推进剂与高分子材料,2012,10(6):34-42.
作者姓名:苗成才  刘长波  冯晓晶  马英华  朱天兵  马会强  张寿忠
作者单位:黎明化工研究院,河南洛阳,471000
摘    要:氧桥呋咱类化合物是一类化学稳定性好、综合性能优良的含能材料.系统论述了几种典型的呋咱醚类化合物(FOF-1、FOF-2、NFME等)、大环呋咱醚类化合物及线性链状呋咱醚类化合物等含能材料的合成及其性能特点.氧桥呋咱类化合物作为含能材料具有良好的应用前景.

关 键 词:呋咱基醚  含能材料  合成  性能

Research Progress of Oxygen-bridge Furazans-based Energetic Materials
MIAO Chengcai,LIU Changbo,FENG Xiaojing,MA Yinghua,ZHU Tianbing,MA Huiqiang,ZHANG Shouzhong.Research Progress of Oxygen-bridge Furazans-based Energetic Materials[J].Chemical Propellants & Polymeric Materials,2012,10(6):34-42.
Authors:MIAO Chengcai  LIU Changbo  FENG Xiaojing  MA Yinghua  ZHU Tianbing  MA Huiqiang  ZHANG Shouzhong
Affiliation:(Limin, g Research Institute of Chemical Industry, Luoyang 471000, China)
Abstract:The oxygen-bridge furazans-based compounds are a series of energetic materials with good chemical stability and comprehensive properties. The synthesis and performance characteristics of several typical furazanyl ethers- (such as FOF-1, FOF-2, NFME, etc.), macro-cyclic furzanyl ethers- and linear chain-like furazanyl ethers- based compounds are systematically discussed. The oxygen-bridge furazans-based compounds have good application prospect as energetic materials.
Keywords:furazanyl ether  energetic material  synthesis  property
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