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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Thermodynamic Insight in the High-Pressure Behavior of UiO-66: Effect of Linker Defects and Linker Expansion
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Thermodynamic Insight in the High-Pressure Behavior of UiO-66: Effect of Linker Defects and Linker Expansion

机译:UiO-66高压行为的热力学见解:接头缺陷和接头扩展的影响

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摘要

In this Article, we present a molecular-level understanding of the experimentally observed loss of crystallinity in UiO-66-type metal organic frameworks, including the pristine UiO-66 to-68 as well as defect-containing UiO-66 materials, under the influence of external pressure. This goal is achieved by constructing pressure-versus-volume profiles at finite temperatures using a thermodynamic approach relying on ab initio derived force fields. On the atomic level, the phenomenon is reflected in a sudden drop in the number of symmetry operators for the crystallographic unit cell because of the disordered displacement of the organic linkers with respect to the inorganic bricks. For the defect-containing samples, a reduced mechanical stability is observed, however, critically depending on the distribution of these defects throughout the material, hence demonstrating the importance of judiciously characterizing defects in these materials.
机译:在本文中,我们对在UiO-66型金属有机框架(包括原始UiO-66至68和含缺陷的UiO-66材料)下实验观察到的结晶度损失进行了分子水平的理解。外部压力的影响。通过使用热力学方法(从头算得来的力场)在有限的温度下构造压力与体积的关系曲线,可以实现此目标。在原子水平上,由于有机连接基相对于无机砖的无序位移,该现象反映在晶体学晶胞的对称算子数量突然下降中。然而,对于含缺陷的样品,观察到降低的机械稳定性,这主要取决于这些缺陷在整个材料中的分布,因此证明了明智地表征这些材料中缺陷的重要性。

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