首页> 外文期刊>RSC Advances >Synthesis, crystal structure and properties of a new 1D polymeric nitrogen-rich energetic complex {TAG[Li(BTO)(H2O)]}n based on 1H,1′H-5,5′-bitetrazole-1,1′-diolate
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Synthesis, crystal structure and properties of a new 1D polymeric nitrogen-rich energetic complex {TAG[Li(BTO)(H2O)]}n based on 1H,1′H-5,5′-bitetrazole-1,1′-diolate

机译:基于1H,1'H-5,5'-比特唑-1,1'-二氢盐的新型1D聚合物富含富氮优质络合物{Tag [Li(BTO(B20)]} n的合成,晶体结构和性质。

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A novel energetic coordination polymer, or a new anionic metal–organic framework (MOF), of {TAG[Li(BTO)(H _(2) O)]} _( n ) based on 1 H ,1′ H -5,5′-bitetrazole-1,1′-diolate (BTO), was developed based on the reaction of BTO with triaminoguanidinium chloride (TAG·HCl) and lithium hydroxide (LiOH), and characterized by elemental analysis and IR spectroscopy. The crystal structure was determined by single-crystal X-ray diffraction measurements. Results show that the polymer belongs to the monoclinic space group C /2 c with a density of 1.678 g cm ~(?3) , and the cell parameters were as follows: a = 15.6560(5) ?, b = 6.3323(19) ?, c = 23.8140(7) ?, β = 91.342(3)°, V = 2360.20(12) ? ~(3) , Z = 8, F (000) = 1232. The central lithium cation was coordinated by two N atoms, two O atoms from BTO ligands, and the O atom from one coordination water molecule. The infinite 1D-zigzag-chains were made up of the central lithium cations linked by bridging-chelating BTO ligands. The thermal decomposition of {TAG[Li(BTO)(H _(2) O)]} _( n ) was studied based on technologies of differential scanning calorimetry (DSC) and thermogravimetry-differential thermogravimetry (TG-DTG). The non-isothermal kinetics parameters were calculated through the Kissinger and the Ozawa–Doyle methods, and the apparent activation energy was 236.6 kJ mol ~(?1) and 233.1 kJ mol ~(?1) , while the critical temperature of thermal explosion was 231.6 °C. The enthalpy of formation for the polymer was also determined through the combustion heat data, measured by using oxygen bomb calorimetry, as 29.5 kJ mol ~(?1) . Additionally, the sensitivities towards impact and friction were assessed with relevant standard methods, the results show that the polymer can act as an insensitive explosive with its high nitrogen-content.
机译:基于1 H,1'H -5 -5的{标签[Li(2)o)]} _(n)的新型能量配位聚合物,或新的活胀金属 - 有机骨架(MOF),的{标签[li(b×(2)o)]} _(n) ,5'-比基四唑-1,1'-二氢酸盐(BTO)基于BTO与三氨基胍氯化钯(标签·HCl)和氢氧化锂(LiOH)的反应进行,并通过元素分析和IR光谱来表征。通过单晶X射线衍射测量测量晶体结构。结果表明,该聚合物属于密度为1.678g cm〜(α3)的单斜视群C / 2 C,细胞参数如下:a = 15.6560(5)?,b = 6.3323(19) ?,C = 23.8140(7)?,β= 91.342(3)°,V = 2360.20(12)? 〜(3),Z = 8,F(000)= 1232.中央锂阳离子由两个N原子,来自BTO配体的两个O原子,以及来自一个配位水分子的O原子。无限的1D- Z字形链由桥接螯合BTO配体连接的中央锂阳离子组成。基于差示扫描量热法(DSC)和热重分析 - 差分热重度(TG-DTG)的技术研究了{标签[Li(BTO)(H _(2)o)]}×(n)的热分解。非等温动力学参数通过基辛格和ozawa-doyle方法计算,表观激活能量为236.6 kj mol〜(α1)和233.1kj mol〜(?1),而热爆炸的临界温度是231.6°C。也通过使用氧气炸弹量热法测量的燃烧热数据来确定聚合物的形成焓,如29.5kJ mol〜(?1)。另外,通过相关标准方法评估抗冲击和摩擦的敏感性,结果表明,聚合物可以用其高氮含量充当不敏感的炸药。

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