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Analysis of evaporation and thermal decomposition of ionic liquids by thermogravimetrical analysis at ambient pressure and high vacuum

机译:在常压和高真空下通过热重分析法分析离子液体的蒸发和热分解

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摘要

Ionic liquids (ILs) are widely discussed as alternative green solvents not only because of their unique chemical properties, but also because of their extremely low vapour pressure and - at least in some cases - relatively high thermal stability. Two complementary methods are analyzed and compared to determine both the rate constant of decomposition and the vapour pressure of four ILs: (1) thermogravimetrical analysis at ambient pressure (TG_(ap)) with an overflow of inert gases, and (2) high vacuum (HV) experiments with a magnetic suspension balance (MSB). At ambient pressure, [EMIM][MeSO3] and [EMIM][CF3SO3] decompose without a significant contribution of evaporation, which leads to the rate constant of thermal degradation. For both ILs, the vapour pressure can only be determined at HV by the MSB, because the evaporation rate is then higher than the decomposition rate. For the relatively volatile ILs [EMIM][NTf2] and [BMIM][NTf2] the vapour pressure can be derived both by the MSB at HV as well as by TG_(ap). General strategies to determine the volatility and stability of ILs and criteria for the maximum operation temperature with regard to decomposition and evaporation are presented.
机译:离子液体(ILs)被广泛讨论为替代绿色溶剂,不仅是因为其独特的化学特性,而且还因为其极低的蒸气压以及(至少在某些情况下)相对较高的热稳定性。分析并比较了两种互补方法,以确定分解速率常数和四个IL的蒸气压:(1)在环境压力(TG_(ap))下有惰性气体溢出的热重分析,以及(2)高真空磁悬浮天平(MSB)进行(HV)实验。在环境压力下,[EMIM] [MeSO3]和[EMIM] [CF3SO3]分解而没有明显的蒸发作用,这导致了热降解的速率常数。对于两个离子液体,只能通过MSB在HV处确定蒸气压,因为此时蒸发速率高于分解速率。对于相对易挥发的IL [EMIM] [NTf2]和[BMIM] [NTf2],蒸气压既可以通过HV处的MSB导出,也可以通过TG_(ap)导出。介绍了确定IL的挥发性和稳定性的一般策略,以及有关分解和蒸发的最高操作温度标准。

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