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首页> 外文期刊>The Journal of Chemical Physics >Unravelling nanoconfined films of ionic liquids
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Unravelling nanoconfined films of ionic liquids

机译:揭开离子液体的纳米限制薄膜

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摘要

The confinement of an ionic liquid between charged solid surfaces is treated using an exactly solvable 1D Coulomb gas model. The theory highlights the importance of two dimensionless parameters: the fugacity of the ionic liquid, and the electrostatic interaction energy of ions at closest approach, in determining how the disjoining pressure exerted on the walls depends on the geometrical confinement. Our theory reveals that thermodynamic fluctuations play a vital role in the “squeezing out” of charged layers as the confinement is increased. The model shows good qualitative agreement with previous experimental data, with all parameters independently estimated without fitting.
机译:使用可精确求解的一维库仑气体模型处理带电固体表面之间的离子液体限制。该理论强调了两个无量纲参数的重要性:在确定施加在壁上的分离压力如何取决于几何限制时,离子液体的逸度和最接近的离子的静电相互作用能。我们的理论表明,随着限制的增加,热力学波动在带电层的“挤出”中起着至关重要的作用。该模型与先前的实验数据显示出良好的定性一致性,所有参数均独立估算而无需拟合。

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