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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Modeling Carbon Dioxide Vibrational Frequencies in Ionic Liquids: III. Dynamics and Spectroscopy
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Modeling Carbon Dioxide Vibrational Frequencies in Ionic Liquids: III. Dynamics and Spectroscopy

机译:离子液体中二氧化碳振动频率建模:III。 动力学和光谱学

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In recent years, interest in carbon capture and sequestration has led to numerous investigations of the ability of ionic liquids to act as recyclable CO2-sorbent materials. Herein, we investigate the structure and dynamics of a model physisorbing ionic liquid, 1-butyl-3-methylimidazolium hexafluorophosphate ([C(4)C(1)Im][PF6]), from the perspective of CO2 using two-dimensional (2D) IR spectroscopy and molecular dynamics simulations. A direct comparison of experimentally measured and calculated 2D IR line shapes confirms the validity of the simulations and spectroscopic calculations. Taken together, the simulations and experiments reveal new insights into the interactions of a CO2 solute with the surrounding ionic liquid and how these interactions manifest in the 2D IR spectra. In particular, higher CO2 asymmetric stretch vibrational frequencies are associated with softer, less populated solvent cages and lower frequencies are associated with tighter, more highly populated solvent cages. The CO2 interacts most strongly with the anions, and these interactions persist for more than 1 ns. The second strongest interactions are with the imidazolium cation ring that last 100 ps, and the weakest interactions are with the cation butyl tail that persist for 10 ps. The principal contributors to spectral diffusion of the CO2 asymmetric stretch vibrational frequency due to the dynamical evolution of the solvent are through Lennard-Jones interactions at short times and electrostatics at long times.
机译:近年来,对碳捕获和封存的兴趣导致了离子液体作为可回收二氧化碳材料的能力的许多研究。在此,我们研究了模型物质离子液体,1-丁基-3-甲基咪唑鎓六氟磷酸铝([C(4)C(1)IM] [PF6])的结构和动力学,从CO 2使用二维( 2D)IR光谱和分子动力学模拟。实验测量和计算的2D IR线形状的直接比较证实了模拟和光谱计算的有效性。在一起,模拟和实验揭示了与周围离子液体的二氧化碳溶质的相互作用以及这些相互作用在2D IR光谱中的相互作用的新见解。特别地,较高的CO 2不对称拉伸振动频率与软更柔软,较少人口稠密的溶剂笼和较低频率与更紧密的,更高填充的溶剂笼相关联。 CO2与阴离子相互作用,这些相互作用持续超过1ns。第二个最强的相互作用与亚硝酸咪唑阳离子环,持续100s ps,最弱的相互作用是持续10 ps的阳离子丁基尾部。由于溶剂的动态演化引起的CO2不对称拉伸振动频率的主要贡献者是通过Lennard-Jones在短时间内的相互作用,长时间的静电。

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