作者
Yue Jiang, Sili Deng, Sungwook Hong, Jiheng Zhao, Sidi Huang, Chi-Chin Wu, Jennifer L Gottfried, Ken-ichi Nomura, Ying Li, Subodh Tiwari, Rajiv K Kalia, Priya Vashishta, Aiichiro Nakano, Xiaolin Zheng
发表日期
2018/10/15
期刊
ACS nano
卷号
12
期号
11
页码范围
11366-11375
出版商
American Chemical Society
简介
Optical ignition of solid energetic materials, which can rapidly release heat, gas, and thrust, is still challenging due to the limited light absorption and high ignition energy of typical energetic materials (e.g., aluminum, Al). Here, we demonstrated that the optical ignition and combustion properties of micron-sized Al particles were greatly enhanced by adding only 20 wt % of graphene oxide (GO). These enhancements are attributed to the optically activated disproportionation and oxidation reactions of GO, which release heat to initiate the oxidization of Al by air and generate gaseous products to reduce the agglomeration of the composites and promote the pressure rise during combustion. More importantly, compared to conventional additives such as metal oxides nanoparticles (e.g., WO3 and Bi2O3), GO has much lower density and therefore could improve energetic properties without sacrificing Al content. The results …
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