Energetic Al-Coated 5,5′-Dinitro-3,3′-bi(1,2,4-triazole) Green Functionalized Cu Nanosheet Films for Ignition-Able Micro Devices

被引:1
作者
Yao, Yapeng [1 ]
Gou, Xiaodong [2 ]
Liu, Wei [1 ]
Liang, Zihang [1 ]
Zhang, Jiangbo [1 ]
Ma, Zhongliang [1 ]
机构
[1] North Univ China, Sch Environm & Safety Engn, Taiyuan 030051, Shanxi, Peoples R China
[2] Beijing Inst Technol, State Key Lab Explos Sci & Technol, Beijing 100081, Peoples R China
关键词
microelectromechanical system; ignition devices; 5,5 '-dinitro-3,3 '-bi(1,2,4-triazole); electrochemicalsynthesis; ignition capability; IN-SITU SYNTHESIS; NANOENERGETIC MATERIALS; INITIATOR; MEMS; PERFORMANCE; FABRICATION; INTEGRATION; DEPOSITION; DENSITY;
D O I
10.1021/acsanm.4c05814
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Integrating energetic materials into microelectromechanical system (MEMS) to enhance their energy output characteristics has shown extensive potential across aerospace, defense, and civilian applications. Within this study, the MEMS compatible Cu/DNBT (DNBT = [5,5 '-dinitro-3,3 '-bi(1,2,4-triazole)]) and Cu/DNBT@nano-Al energetic films were successfully synthesized on the copper substrate using an electrochemical method and a drip coating method. The scanning electron microscope (SEM), X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), differential thermal analyses (DTA), and a pulse laser ignition test were used to analyze the morphology, composition, thermal performance, and ignition properties of the prepared samples. The findings indicate that the prepared Cu/DNBT and Cu/DNBT@nano-Al energetic films exhibit a nanostructure, and their morphology can be effectively regulated via modifications to the deposition voltage, deposition time, and aluminum plating frequency. Furthermore, the energetic properties of Cu/DNBT@nano-Al films can be adjusted after the deposition of nano-Al. Their heat release, flame height and ignition duration can reach up to 1823.1 J<middle dot>g-1, 13.5 mm, and 400 mu s, respectively. These findings suggest that Cu/DNBT@nano-Al energetic films being a prime contender for initiating powders in MEMS pyrotechnics. In summary, this work offers valuable insights into the integration and application of energetic materials in MEMS ignition devices.
引用
收藏
页码:27698 / 27705
页数:8
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