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Convenient design of anti-wetting nano-Al/WO_(3)metastable intermolecular composites(MICs)with an enhanced exothermic life-span
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作者 Xiaogang Guo Taotao Liang +5 位作者 Junfeng Guo Huisheng Huang Shuying Kong Jianwei Shi Binfang Yuan Qi Sun 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第2期84-92,共9页
For solving the dilemma of the short exothermic life-span of WO_(3)based metastable interstitial composites(MICs)with extensive application prospect,this paper has firstly designed the promising antiwetting Al/WO_(3)M... For solving the dilemma of the short exothermic life-span of WO_(3)based metastable interstitial composites(MICs)with extensive application prospect,this paper has firstly designed the promising antiwetting Al/WO_(3)MICs via electrophoresis assembly of nano-Al and WO_(3)particles fabricated by hydrothermal synthesis method,followed by the subsequent fluorination treatment.A combination of X ray diffraction(XRD),field emission scanning electron microscope(FESEM),energy dispersive X-ray spectroscopy(EDX),and Fourier transform infrared spectroscopy(FT-IR)techniques were utilized in order to characterize the crystal structure,microstructure,and elemental composition distribution of target films after different natural exposure tests.The product with uniform distribution and high purity possesses a high contact angle of~170°and a minute sliding angle of~1°,and displays the outstanding anti-wetting property using droplets with different surface tensions.It also shows great moisture stability in high relative-humidity circumstances after one year of the natural exposure experiment.Notably,the heat output of a fresh sample can reach up to 2.3 kJ/g and retain 96%after the whole exposure test,showing outstanding thermo-stability for at least one year.This work further proposed the mechanism of antiwetting Al/WO_(3)MICs considering the variation tendency of their DSC curve,providing a valuable theoretical reference for designing other self-protected MICs with a long exothermic life-span applied in wide fields of national defense,military industry,etc. 展开更多
关键词 Electrophoresis assembly al/wo_(3)mics Fluorination treatment Anti-wetting property Exothermic life-span
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火焰法制备Al/MoO_3纳米片阵列的影响因素
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作者 赵娜 沈金朋 +2 位作者 李瑞 杨光成 黄辉 《含能材料》 EI CAS CSCD 北大核心 2013年第6期734-737,共4页
亚稳态分子间复合物(MIC)阵列由于具有高能量密度、小尺寸条件下能自持反应的优点,在集成化火工品方面具有潜在的应用价值。采用火焰法在硅基底上原位制备了高度有序的MoO3纳米片阵列,探讨了基底材料、纳米阵列生长时间、火焰源因素... 亚稳态分子间复合物(MIC)阵列由于具有高能量密度、小尺寸条件下能自持反应的优点,在集成化火工品方面具有潜在的应用价值。采用火焰法在硅基底上原位制备了高度有序的MoO3纳米片阵列,探讨了基底材料、纳米阵列生长时间、火焰源因素对生成MoO3形貌的影响,得到了 MoO3纳米片阵列的优化制备工艺条件: 以硅片为基底,生长时间为5 min和甲烷为火焰源。制备的纳米片厚度为100~200 nm,宽度约5 μm,长度达到十几个微米。分别采用磁控溅射和热蒸发在MoO3纳米片阵列表面镀铝得到Al/MoO3 MIC阵列,在铝膜厚度相同的情况下,采用热蒸发镀铝方式优于磁控溅射。热蒸发铝膜厚度为900 nm时,所获得的Al/MoO3 MIC阵列具有较高的放热量,达到3276 J·g-1。 展开更多
关键词 应用化学 含能材料 al MOO3 亚稳态分子间复合物(mic) 火焰法
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