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The effect of crystallite size on pressure amplification in switchable porous solids

机译:晶粒尺寸对可切换多孔固体中压力放大的影响

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Negative gas adsorption (NGA) in ordered mesoporous solids is associated with giant contractive structural transitions traversing through metastable states. Here, by systematically downsizing the crystal dimensions of a mesoporous MOF (DUT-49) from several micrometers to less than 200?nm, counterintuitive NGA phenomena are demonstrated to critically depend on the primary crystallite size. Adsorbing probe molecules, such as n-butane or nitrogen, gives insights into size-dependent activation barriers and thermodynamics associated with guest-induced network contraction. Below a critical crystal size, the nitrogen adsorption-induced breathing is completely suppressed as detected using parallelized synchrotron X-ray diffraction–adsorption instrumentation. In contrast, even the smallest particles show NGA in the presence of n-butane, however, associated with a significantly reduced pressure amplification. Consequently, the magnitude of NGA in terms of amount of gas expulsed and pressure amplification can be tuned, potentially paving the way towards innovative concepts for pressure amplification in micro- and macro-system engineering.
机译:有序介孔固体中的负气体吸附(NGA)与穿越亚稳态的巨大收缩结构转变有关。在这里,通过系统地将介孔MOF(DUT-49)的晶体尺寸从几微米减小到小于200纳米,证明了违反直觉的NGA现象在很大程度上取决于初级晶粒的尺寸。吸附探针分子(例如正丁烷或氮)可洞察与访客诱导的网络收缩相关的尺寸依赖性活化壁垒和热力学。低于临界晶体尺寸时,使用平行同步X射线衍射-吸附仪器检测到的氮吸附引起的呼吸被完全抑制。相反,即使最小的颗粒在正丁烷存在下也显示NGA,这与压力放大显着降低有关。因此,可以调整NGA的气体排出量和压力放大量,从而为微系统和宏观系统工程中的压力放大创新概念铺平了道路。

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