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Synthesis and Characterization of Functionalized Ionic Liquids for Thermal Storage

机译:官能化离子液体热储存的合成与表征

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A series of imidazolium-based ionic liquids were synthesized by introducing functional groups in the imidazolium cation to develop new phase change materials. The structures of these ionic liquids were determined by nuclear magnetic resonance; the quantum calculation was performed based on density functional theory by Gaussian 09 to determine the number of hydrogen bonds among the ions. The heat of fusion, heat capacity, and thermal storage density of the ionic liquids were investigated by DSC; in addition, the thermal stability was determined by TGA The thermal analysis results indicate that new functionalized ionic liquids have excellent thermal stability with decomposition temperatures higher than 475 K. In addition, the heat of fusion, heat capacity, and thermal storage density of the functionalized ionic liquids increased on average by 34, 86.5, and 100%, respectively, compared with alkyl chain ionic liquids with the same carbon numbers. These superior properties are attributed to the additional hydrogen bonds in. the functidnalized ionic liquids.
机译:通过引入咪唑鎓阳离子中的官能团来合成一系列基于咪唑鎓的离子液体,以产生新的相变材料。这些离子液体的结构通过核磁共振确定;基于高斯09基于密度泛函理论进行量子计算,以确定离子中的氢键数。通过DSC研究了离子液体的熔化,热容量和热存储密度的热量;此外,通过TGA测定热稳定性,热分析结果表明,新的官能化离子液体具有优异的热稳定性,分解温度高于475k。此外,融合的热量,热容量和官能化的热存储密度。与具有相同碳数的烷基链离子液体相比,离子液体平均平均增加34,86.5和100%。这些优异的性质归因于额外的氢键。FunctIdnalized离子液体。

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