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A kinetic study of the thermal decomposition of mesoionic compounds within scope of its application in nonlinear optical devices

机译:在非线性光学器件中应用范围内的中离子化合物热分解的动力学研究

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摘要

The mesoionic compounds are pentagonal heterocyclic betaines with their potential use mainly in the pharmacology field due to the diversity of their biological activities. Their exceptional electric properties lead the compounds to be investigated in the field such as the nonlinear optical devices. In this study, five mesoionic compounds of the 1,3-thiazole-5-thiolate system had been synthesized from amino acids derived from glycine through 1,3-dipolar cycloaddition/cycloreversion reaction. The compounds were characterized by the use of infrared spectrometry, thermogravimetry and differential scanning calorimetry techniques. Thermal stability of each structure was determined and characterized by the kinetic study of the thermal decomposition by non-isothermal thermogravimetry. The DSC curves for MI-1, MI-2, MI-3, MI-4, and MI-5 demonstrated their fusion and subsequent decomposition with the exception of MI-3, which presented only decomposition stages. The kinetic models that better described the thermal decomposition mechanism of the mesoionic compounds achieved by the non-isothermal methods were R1, R2 and R3 (based on the geometric models).
机译:中离子化合物是五边形杂环甜菜碱,由于其生物活性的多样性,其潜在的用途主要是在药理学领域。它们出色的电性能使这些化合物在诸如非线性光学器件等领域得到研究。在这项研究中,已通过1,3-偶极环加成/环还原反应从甘氨酸衍生的氨基酸合成了1,3-噻唑-5-硫醇盐系统的5个中离子化合物。通过使用红外光谱,热重分析和差示扫描量热技术对化合物进行表征。通过非等温热重法对热分解的动力学研究确定并表征了每种结构的热稳定性。 MI-1,MI-2,MI-3,MI-4和MI-5的DSC曲线显示了它们的融合和随后的分解,除了MI-3(仅呈现分解阶段)外。 R1,R2和R3(基于几何模型)可以更好地描述通过非等温方法实现的中离子化合物热分解机理的动力学模型。

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