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Rotational dynamics of the organic bridging linkers in metal-organic frameworks and their substituent effects on the rotational energy barrier

机译:金属有机骨架中有机桥接接头的旋转动力学及其对旋转能量屏障的取代基效应

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Organic bridging linkers or ligands play an important role in gas and fuel storage, CO2 capture, and controlling the radical polymerization reactions in metal-organic frameworks (MOFs) nanochannels. The rotation of the linkers causes the expansion of the pore size and pore volume in MOFs. To understand the rotational behavior of organic linkers in MOFs and the substituent effects of the linkers, we investigated the equilibrium structure, stability, potential energy curves (PECs), and rotational energy barriers of the organic bridging linkers of a series of MOF model systems imposing three constrained imaginary planes. Both the dispersion-uncorrected and dispersion-corrected density functional theory (DFT and DFT-D i.e. B3LYP and B3LYP-D3) methods with the correlation consistent double-zeta quality basis sets have been applied to study the model MOF systems [Cu-4(X)(Y)(6)(NH3)(4)] (where X = organic bridging linker, and Y = HCO2). The present study found that the structural parameters and rotational energy barrier of the model MOF containing 1,4-benzendicarboxylate (BDC) linker are in accord with previous experiments. This study reveals that rotational barriers significantly differ depending on the substituents of organic linkers, and the linker dynamical rotation provides information about the framework flexibility with various potential applications in porous materials science. Changing the linkers in the MOFs could be helpful for designing various new kinds of flexible MOFs which will have many important applications in gas storage and separation, catalysis, polymerization, sensing, etc.
机译:有机桥接接头或配体在气体和燃料储存,二氧化碳捕获中发挥着重要作用,并控制金属有机骨架(MOF)纳米中的自由基聚合反应。接头的旋转导致MOF中的孔径和孔体积的膨胀。要了解MOF的有机连接剂的旋转行为和接头的取代基,我们研究了一系列MOF模型系统施加的一系列MOF模型系统的有机桥接接头的平衡结构,稳定性,潜在能量曲线(PEC)和旋转能量屏障三个受限的想象飞机。具有相关一致双Zeta质量基集的分散 - 不校正和分散校正的密度泛函理论(DFT和DFT-D IE B3LYP和B3LYP-D3)方法已经应用于研究模型MOF系统[CU-4( X)(Y)(6)(NH 3)(4)](其中X =有机桥接接头,和Y = HCO2)。本研究发现,含有1,4-苯甲酸甲酯(BDC)接头的模型MOF的结构参数和旋转能量屏障均符合先前的实验。该研究表明,根据有机接头的取代基,旋转屏障显着不同,并且连接器动态旋转提供了关于多孔材料科学中各种潜在应用的框架灵活性的信息。更改MOF中的接头可能有助于设计各种新型柔性MOF,这将在气体储存和分离,催化,聚合,传感等中具有许多重要的应用。

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    《RSC Advances》 |2019年第65期|共11页
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