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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Molecular dynamics simulations of the ionic liquid [EMIM~+][TFMSI~-] confined inside rutile (110) slit nanopores
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Molecular dynamics simulations of the ionic liquid [EMIM~+][TFMSI~-] confined inside rutile (110) slit nanopores

机译:限制在金红石(110)缝隙纳米孔内的离子液体[EMIM〜+] [TFMSI〜-]的分子动力学模拟

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The structure and dynamics of the ionic liquid (IL) [EMIM~+][TFMSr] inside a rutile (110) slit nanopore of width H = 5.2 nm at T = 333 K are studied using classical molecular dynamics (MD) simulations. These results are compared against those obtained in our previous study (N. N. Rajput et al., J. Phys, Chem. C, 2012,116, 5169-5181) for the same IL inside a slit graphitic nanopore of the same width. Electrostatic and dispersion interactions are present between the IL and the rutile walls, whereas only weaker van der Waals interactions are present between the IL and the graphitic walls. Our results suggest that the strength of the interactions between the pore walls and the IL can significantly affect the structure and dynamics of the confined IL. Layering effects were more pronounced for the IL inside a rutile pore as compared to inside a graphitic pore. The ions near the rutile pore walls had a liquid structure that was significantly different from that of the bulk IL; in contrast, the same ions near graphitic pore walls had a liquid structure that was similar to that of the bulk IL. Cations and anions adopted multiple orientations near the rutile walls, which contrast with the parallel orientations that were uniformly observed for the same ions near graphitic walls. The dynamics of [EMIM~+][TFMSI~-] inside a slit rutile pore are significantly slower than those observed inside a slit graphitic pore. Near the rutile walls, the dynamics of the ions were about an order of magnitude slower than those of ions near graphitic walls. The ions in the center of a rutile pore exhibit enhanced mobilities, but still about 2-4 times slower than those observed for ions in the center of a graphitic pore. The effects of variations in the amount of IL on the dynamics were very marked inside a rutile pore, with reductions of up to 4 times in the mobilities of the ions in the different regions of the pore; in contrast, pore loading seems to cause smaller variations in the dynamics of ILs inside a graphitic slit nanopore.
机译:使用经典分子动力学(MD)模拟研究了金红石(110)宽H = 5.2 nm,T = 333 K的金红石(110)狭缝纳米孔内部的离子液体(IL)[EMIM〜+] [TFMSr]的结构和动力学。将这些结果与我们先前的研究(N. N. Rajput等人,J。Phys,Chem。C,2012,116,5169-5181)中获得的结果相比较,即在相同宽度的狭缝石墨纳米孔中存在相同的IL。 IL和金红石壁之间存在静电和分散相互作用,而IL和石墨壁之间仅存在较弱的范德华相互作用。我们的结果表明,孔壁和IL之间相互作用的强度可以显着影响受限IL的结构和动力学。与石墨孔内部相比,金红石孔内部的IL的分层效应更为明显。金红石孔壁附近的离子具有与本体离子液体显着不同的液体结构。相反,石墨孔壁附近的相同离子的液体结构与整体IL相似。阳离子和阴离子在金红石壁附近采用多种取向,这与在石墨壁附近对相同离子均匀观察到的平行取向形成对比。在缝状金红石孔内的[EMIM〜+] [TFMSI--]动力学比在缝状石墨孔内观察到的动力学明显慢。在金红石壁附近,离子的动力学比石墨壁附近的离子的动力学慢大约一个数量级。金红石孔中心的离子显示出增强的迁移率,但仍比石墨孔中心的离子慢约2-4倍。 IL量的变化对动力学的影响在金红石孔内部非常明显,在孔的不同区域中离子迁移率降低了多达4倍。相反,孔加载似乎导致石墨狭缝纳米孔内部IL的动力学变化较小。

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