首页> 外文会议>Seminar on New Trends in Research of Energetic Materials >Bimolecular crystal CL-20 with 7H-tris(1,2,5oxadiazolo)3,4-b:3',4'-d:3',4'-fazepine Experimental enthalpy of formation and thermal stability
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Bimolecular crystal CL-20 with 7H-tris(1,2,5oxadiazolo)3,4-b:3',4'-d:3',4'-fazepine Experimental enthalpy of formation and thermal stability

机译:具有7H-tris(1,2,5 oxadiazolo)3,4-b:3',4'-d:3“,4” -f Azepine的双分子晶体CL-20实验形成焓和热稳定性

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The standard enthalpies of combustion and enthalpy of formation (EF) of 7H-tris([1,2,5]oxadiazole)[3,4-b:3',4'-d:3",4"-f]azepine (Az), its bimolecular crystal (BMC) with CL-20 γ-polymorph in molar ratio 1:1, and the γ-polymorph of CL-20 itself have been experimentally determined. It has been established that the difference between EF of BMC (1007.5±6.7 kJ/mole) and EF of the equimolecular mechanical mixture γ -CL-20 and Az (995.9 kJ/mole) differ by no more than 12 kJ/mole, that is a level of a measurement deviation. Quantum-chemical calculations have shown that the BMC does not possess any additional energy as compared to the total energy of the original isolated Az crystals and y -CL-20 and the value of the standard EF can be considered to a first approximation as the sum of the EFs of the original crystals. This difference does not affect the energy performance of compositions. It has been established that during thermal decomposition of the BMC y -CL-20 with Az the main contribution to the heat release rate and the process heat makes the decomposition of CL-20. Compound Az presented in the BMC, even inhibits the thermal decomposition of CL-20. This phenomenon lets to increase the shelf life of the BMC compared to the shelf life of the original CL-20.
机译:7H-tris([1,2,5]恶二唑)[3,4-b:3',4'-d:3“,4” -f] a庚因的标准燃烧焓和形成焓(EF) (Az),其具有摩尔比为1:1的CL-20γ-多晶型物的双分子晶体(BMC)和CL-20本身的γ-多晶型物已经通过实验确定。已经确定,BMC的EF(1007.5±6.7 kJ / mol)与等分子机械混合物γ-CL-20和Az的EF(995.9 kJ / mol)之差不超过12 kJ / mol。是测量偏差的水平。量子化学计算表明,与原始分离的Az晶体和y -CL-20的总能量相比,BMC没有任何额外的能量,并且标准EF的值可以近似地作为总和原始晶体的EF。该差异不影响组合物的能量性能。已经确定,在具有Az的BMC y -CL-20的热分解过程中,对热释放速率和过程热量的主要贡献是使CL-20分解。 BMC中存在的化合物Az甚至抑制CL-20的热分解。与原始CL-20的货架期相比,此现象可以增加BMC的货架期。

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