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首页> 外文期刊>The Journal of Chemical Physics >Adsorption induced transitions in soft porous crystals: An osmotic potential approach to multistability and intermediate structures
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Adsorption induced transitions in soft porous crystals: An osmotic potential approach to multistability and intermediate structures

机译:吸附诱导的软质多孔晶体中的转变:渗透势方法的多重稳定性和中间结构

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摘要

Soft porous crystals are flexible metal-organic frameworks that respond to physical stimuli (temperature, pressure, and gas adsorption) by large changes in their structure and unit cell volume. We propose here a thermodynamic treatment, based on the osmotic ensemble, of the interplay between guest adsorption and host deformation, where the bare host material can undergo elastic deformation, as well as structural transitions between metastable phases in the case of a multistable material. We show that in addition to structural transitions between metastable phases of bistable or multistable host frameworks, a new guest-stabilized host phase can be created when the size of the adsorbate is larger than the empty materials pore size. We then confront the findings of our approach with experimental data for systems exhibiting phenomena such as gate opening and breathing.
机译:软质多孔晶体是柔性的金属有机骨架,通过其结构和单位晶胞体积的巨大变化来响应物理刺激(温度,压力和气体吸附)。我们在此提出一种基于渗透性集合的热力学处理方法,用于处理客体吸附与主体变形之间的相互作用,在这种情况下,裸主体材料会发生弹性变形,在多稳态材料的情况下,亚稳态相之间也会发生结构转变。我们表明,除了双稳态或多稳态宿主框架的亚稳态相之间的结构转变之外,当被吸附物的尺寸大于空物质的孔径时,可以创建新的客体稳定的宿主相。然后,我们将针对具有诸如开门和呼吸之类现象的系统的实验数据来面对我们方法的发现。

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