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首页> 外文期刊>The Journal of Chemical Physics >Tuning flexibility to control selectivity in soft porous crystals
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Tuning flexibility to control selectivity in soft porous crystals

机译:调整柔软多孔晶体中选择性的灵活性

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摘要

We use flat-histogram Monte Carlo simulations to study how changing the flexibility of soft porous crystals (SPCs) affects their selective adsorption of a binary, size-asymmetric supercritical fluid. Specifically, we consider mesoporous SPCs which have multiple minima in their free energy profiles as a function of pore size such that they are capable of exhibiting polymorphism between a narrow and large pore phase. While specific fluid-pore interactions determine the shape of both pores' selectivity curve as a function of adsorbate pressure, an individual pore tends to selectively adsorb a species based on the size of the adsorbate molecule relative to itself, thereby shifting the pore's selectivity curve relative to its polymorph. By controlling the flexibility of a SPC, the relative thermodynamic stability of the two pore phases may be varied, thereby changing the overall selectivity of the SPC during adsorbate loading. We investigate this for two classes of SPCs: one representative of "gate-opening" materials and another of "breathing" materials. For gate-opening materials, this control is much more salient than in breathing ones. However, for the latter, we illustrate how to tune the free energy profile to create materials which breathe multiple times during adsorption/desorption.
机译:我们使用平面直方图蒙特卡罗模拟来研究软多孔晶体(SPC)的柔韧性如何影响其二元尺寸不对称超临界流体的选择性吸附。具体地,我们考虑作为孔径的函数的自由能谱中具有多个最小值的中孔SPC,使得它们能够在狭窄和大的孔相之间表现出多态性。虽然特定的流体 - 孔相互作用决定了孔的选择性曲线的形状,但作为吸附压力的函数,倾向于基于吸附分子相对于自身的尺寸选择性地吸附物种,从而使孔的选择性曲线相对变化它的多晶型。通过控制SPC的灵活性,可以改变两个孔相的相对热力学稳定性,从而改变吸附载荷期间SPC的整体选择性。我们调查这一两类SPC:一个代表“闸门”材料和另一个“呼吸”材料。对于浇口开口材料,该控制比呼吸更突出。然而,对于后者,我们说明了如何调整自由能量曲线以在吸附/解吸期间多次呼吸的材料。

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