Liu Qiangqiang, Jin Bo, Zhang Qingchun, Shang Yu, Guo Zhicheng, Tan Bisheng, Peng Rufang
Research Center of Laser Fusion, China Academy of Engineering Physics, Mianyang 621010, China.
State Key Laboratory Cultivation Base for Nonmetal Composites and Functional Materials, Southwest University of Science and Technology, Mianyang 621010, China.
Materials (Basel). 2016 Aug 10;9(8):681. doi: 10.3390/ma9080681.
The focus of energetic materials is on searching for a high-energy, high-density, insensitive material. Previous investigations have shown that 3D energetic metal-organic frameworks (E-MOFs) have great potential and advantages in this field. A nitrogen-rich E-MOF, Pb(bta)·2H₂O [N% = 31.98%, H₂bta = ,-Bis(1-tetrazole-5-yl)-amine], was prepared through a one-step hydrothermal reaction in this study. Its crystal structure was determined through single-crystal X-ray diffraction, Fourier transform infrared spectroscopy, and elemental analysis. The complex has high heat denotation (16.142 kJ·cm), high density (3.250 g·cm), and good thermostability ( = 614.9 K, 5 K·min). The detonation pressure and velocity obtained through theoretical calculations were 43.47 GPa and 8.963 km·s, respectively. The sensitivity test showed that the complex is an impact-insensitive material (IS > 40 J). The thermal decomposition process and kinetic parameters of the complex were also investigated through thermogravimetry and differential scanning calorimetry. Non-isothermal kinetic parameters were calculated through the methods of Kissinger and Ozawa-Doyle. Results highlighted the nitrogen-rich MOF as a potential energetic material.
含能材料的重点在于寻找一种高能、高密度、钝感的材料。先前的研究表明,三维含能金属有机框架(E-MOFs)在该领域具有巨大的潜力和优势。本研究通过一步水热反应制备了一种富氮E-MOF,Pb(bta)·2H₂O [N% = 31.98%,H₂bta = ,-双(1-四唑-5-基)-胺]。通过单晶X射线衍射、傅里叶变换红外光谱和元素分析确定了其晶体结构。该配合物具有高热焓(16.142 kJ·cm)、高密度(3.250 g·cm)和良好的热稳定性( = 614.9 K,5 K·min)。通过理论计算得到的爆轰压力和速度分别为43.47 GPa和8.963 km·s。敏感性测试表明该配合物是一种冲击钝感材料(IS > 40 J)。还通过热重分析和差示扫描量热法研究了该配合物的热分解过程和动力学参数。通过基辛格法和小泽- Doyle法计算了非等温动力学参数。结果突出了这种富氮金属有机框架作为一种潜在含能材料的特性。