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CO2 Absorption by DBU-Based Protic Ionic Liquids: Basicity of Anion Dictates the Absorption Capacity and Mechanism

机译:DBU基质子离子液体对CO2的吸收:阴离子的碱性决定了其吸收能力和机理

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摘要

PILs are promising solvent systems for CO2 absorption and transformations. Although previously tremendous work has been paid to synthesize functionalized PILs to achieve a high-performance absorption, the underlying mechanisms are far less investigated and still not clear. In this work, a series of DBU-based PILs, i.e., [DBUH][X], with anions of various basicities were synthesized. The basicities of the anions were accurately measured in [DBUH][OTf] or extrapolated from the known linear correlations. The apparent kinetics as well as the capacities for CO2 absorption in these PILs were studied systematically. The results show that the absorption rate and capacity in [DBUH][X] are in proportional to the basicity of PIL, i.e., a more basic PIL leads to a faster absorption rate and a higher absorption capacity. In addition, the spectroscopic evidences and correlation analysis indicate that the capacity and mechanism of CO2 absorption in [DBUH][X] are essentially dictated by the basicities of anions of these PILs.
机译:PIL是用于CO2吸收和转化的有前途的溶剂系统。尽管以前已经付出了巨大的努力来合成功能化的PIL,以实现高性能的吸收,但是其潜在机理还远远没有得到研究,并且仍然不清楚。在这项工作中,合成了一系列具有各种碱性阴离子的基于DBU的PIL,即[DBUH] [X]。阴离子的碱度可以在[DBUH] [OTf]中精确测量,或者从已知的线性相关性推断得出。系统地研究了这些PIL的表观动力学以及吸收CO2的能力。结果表明,[DBUH] [X]中的吸收速率和容量与PIL的碱性成正比,即,碱性越高的PIL导致更快的吸收速率和更高的吸收容量。另外,光谱证据和相关分析表明,[DBUH] [X]中CO 2吸收的能力和机理基本上由这些PIL的阴离子的碱性决定。

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