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First Study of the Thermal and Storage Stability of Arenediazonium Triflates Comparing to 4-Nitrobenzenediazonium Tosylate and Tetrafluoroborate by Calorimetric Methods

机译:第一次研究氧化亚氮酸铵的热储存稳定性与量热法相比4-硝基苯甲酸酯和四氟硼酸盐的衍生物

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Herein, for the first time, using isothermal flow calorimetry and differential scanning calorimetry (DSC)/thermal gravimetric analysis (TGA), we have determined the thermal decomposition energies for the number of solid arenediazonium triflates comparing to 4-nitrobenzene tosylate and 4-nitrobenzentetrafluoroborate. The kinetics of thermal decomposition, activation energies, and half-lives of the studied diazonium salts (DSs) were found. Using gas chromatography-mass spectrometry (MS) and liquid chromatography-MS, we have elucidated the products formed during thermolysis of the investigated DSs. By density functional theory quantum chemical calculations at the B3LYP/aug-cc-pVDZ level of theory, we simulated the thermodynamics of decomposition reactions proceeding via substitution of the diazonium group by corresponding nucleophiles. The method applied predicted the decomposition energies of all the studied compounds fairly precise, except for 2-nitrobenzene diazonium triflate. It has been found that 4-nitrobenzene diazonium triflate has increased storage stability under normal conditions comparing to the corresponding tosylate and tetrafluoroborate. The experimental and theoretical results demonstrated that comparing to DSC/TGA, isothermal flow calorimetry more adequately reflects the energetics of the thermal decomposition of DSs and their storage stability under normal conditions.
机译:这里,首次使用等温流量热量和差示扫描量热法(DSC)/热重分析(TGA),我们已经确定了与4-硝基苯甲硅烷酯和4-硝基苯四氟硼酸盐相比的固体氧化氮杂化酸的数量的热分解能量。发现了研究的重氮盐(DSS)的热分解,激活能和半衰期的动力学。使用气相色谱 - 质谱(MS)和液相色谱 - MS,我们阐明了在研究的DSS热解期间形成的产物。通过密度函数理论量子化学计算在B3LYP / AUG-CC-PVDZ理论水平,我们通过相应的亲核试剂通过替代重氮基进行分解反应的热力学。除了2-硝基苯二约铵三丁酸盐外,应用的方法应用了相当精确的所有研究化合物的分解能量。已经发现,与相应的甲苯乙烯酯和四氟硼酸盐相比,4-硝基苯二约铵三氢化物在正常条件下具有增加的储存稳定性。实验性和理论结果证明,与DSC / TGA相比,等温流量热量比较充分地反映了DSS热分解的能量和在正常条件下的储存稳定性。

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