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Thermal Stability and Decomposition Kinetics of 1-Alkyl-23-Dimethylimidazolium Nitrate Ionic Liquids: TGA and DFT Study

机译:1-烷基-23-二甲基咪唑氨酸离子液体的热稳定性和分解动力学:TGA和DFT研究

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摘要

The thermal stability and decomposition kinetics analysis of 1-alkyl-2,3-dimethylimidazole nitrate ionic liquids with different alkyl chains (ethyl, butyl, hexyl, octyl and decyl) were investigated by using isothermal and nonisothermal thermogravimetric analysis combined with thermoanalytical kinetics calculations (Kissinger, Friedman and Flynn-Wall-Ozawa) and density functional theory (DFT) calculations. Isothermal experiments were performed in a nitrogen atmosphere at 240, 250, 260 and 270 °C. In addition, the nonisothermal experiments were carried out in nitrogen and air atmospheres from 30 to 600 °C with heating rates of 5, 10, 15, 20 and 25 °C/min. The results of two heating modes, three activation energy calculations and density functional theory calculations consistently showed that the thermal stability of 1-alkyl-2,3-dimethylimidazolium nitrate ionic liquids decreases with the increasing length of the alkyl chain of the substituent on the cation, and then the thermal hazard increases. This study could provide some guidance for the safety design and use of imidazolium nitrate ionic liquids for engineering.
机译:的具有不同烷基链(乙基,丁基,己基,辛基和癸基)1-烷基-2,3-二甲基咪唑硝酸盐离子液体的热稳定性和分解动力学分析通过使用等温研究和非等温的热重分析与热分析动力学计算组合(基辛格,弗里德曼和弗林 - 墙 - 小泽)和密度泛函理论(DFT)计算。等温实验在氮气氛中,在240,250,260和270℃下进行。此外,非等温实验是在氮气和空气气氛为30〜600℃,以5,10,15,20和25℃/ min的加热速率进行。的两个加热模式,三个活化能计算和密度泛函理论计算的结果一致表明,硝酸1-烷基-2,3-二甲基咪唑离子液体的热稳定性与所述取代基的烷基链上的阳离子的增加长度减小,然后将热的危险增加。该研究可为安全设计提供一些指导和使用的硝酸咪唑离子液体工程。

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