Du Wei, Tang Pengfei, Yang Bo, Yang Lei, Li Xiaodong, Duan Ming, Gou Shaohua, Ma Qing
Institute of Chemical Materials, China Academy of Engineering Physics, Mianyang, 621900, China.
College of Chemistry and Chemical Engineering, Southwest Petroleum University, Chengdu, 610500, China.
Small. 2023 Nov;19(46):e2303678. doi: 10.1002/smll.202303678. Epub 2023 Jul 20.
Photosensitive materials, such as energetic complexes, usually have high sensitivity and cause heavy-metal pollution, whereas others, like carbon black and dye, do not contain energy, which affects energy output and mechanical properties. In this work, donor-acceptor π-conjugated energetic catalysts, denoted as D-n, are designed and synthesized. Nonmetallic hybrid energetic composites are prepared by assembling the as-synthesized catalysts into multiscale ammonium perchlorate (AP). Composites containing catalysts and APs can be successfully ignited without the involvement of metals. The new ignition mechanism is further analyzed using experimental and theoretical analyses such as UV-vis-near-infrared (NIR) spectra, electron-spin resonance spectroscopy, and energy-gap analysis. The shortest ignition delay time is 56 ms under the experimental condition of a NIR wavelength of 1064 nm and a laser power of 10 W. At the voltage of 1 kV and the electric field of 500 V mm , the laser-ignition delay time of D-2/AP hybrid composite decreases from 56 to 35 ms because D-2 also exhibits organic semiconductor-like properties. D-2/AP and D-12/AP can also be used to successfully laser ignite other common energetic materials. This study can guide the development of advanced metal-free laser-ignitable energetic composites to address challenges in the field of aerospace engineering.
光敏材料,如含能配合物,通常具有高灵敏度且会造成重金属污染,而其他材料,如炭黑和染料,不含能量,这会影响能量输出和机械性能。在这项工作中,设计并合成了供体-受体π共轭含能催化剂,记为D-n。通过将合成的催化剂组装到多尺度高氯酸铵(AP)中制备了非金属混合含能复合材料。含有催化剂和AP的复合材料在无金属参与的情况下能够成功点火。利用紫外-可见-近红外(NIR)光谱、电子自旋共振光谱和能隙分析等实验和理论分析方法进一步分析了新的点火机理。在NIR波长为1064nm、激光功率为10W的实验条件下,最短点火延迟时间为56ms。在1kV电压和500V/mm电场下,D-2/AP混合复合材料的激光点火延迟时间从56ms降至35ms,因为D-2还表现出类似有机半导体的性质。D-2/AP和D-12/AP也可用于成功激光点燃其他常见的含能材料。本研究可为先进的无金属激光点火含能复合材料的开发提供指导,以应对航空航天工程领域的挑战。