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Dimension Control in Mixed Linker Metal-Organic Frameworks via Adjusting the Linker Shapes

机译:通过调节接头形状,混合接头金属 - 有机框架中的尺寸控制

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摘要

In this context, we describe a novel method to control the dimensionality and, further, the morphology in three mixed linker metal-organic frameworks (MOFs) TMU-70, TMU-71, and TMU-49 via altering the linker shapes. The compatibility between the shape of linkers used in the mixed linker framework, specifically linker angles, can directly affect the dimensionality of the resulting networks from 2D to 3D. Using incompatible linkers (one bent and one linear) together with binodal SBU directed the structure to form 2D networks, while 3D networks were obtained through applying linkers with the same shape. Further, the 2D and 3D MOFs were fabricated through the coordination modulation strategy. The impact of various modulators on the size and morphology of the structures has been examined. The 2D MOFs produced only nanorods through application of different capping agents owing to their preferred crystal growth, while the 3D networks led to rod and plate morphologies. Also, the catalytic performance of MOFs in an aldol-type condensation reaction was estimated. High and fast catalytic activity is detected in nanoscale rod-shaped catalysts.
机译:在这种情况下,我们描述了一种通过改变接头形状的三种混合接头金属 - 有机骨架(MOF)TMU-70,TMU-71和TMU-49中的一种新的方法来控制维度的新方法。混合连接器框架中使用的连接器的形状与特异性接头角度之间的兼容性可以直接影响由2D到3D的所得网络的维度。使用不兼容的连接器(一个弯曲和一个线性)与二进制SBU一起指向结构以形成2D网络,而通过使用具有相同形状的连接器获得3D网络。此外,通过配位调制策略制造2D和3D MOF。检查了各种调节剂对结构的尺寸和形态的影响。由于其优选的晶体生长,2D MOF仅通过应用不同的封端剂而产生纳米棒,而3D网络导致杆和板形态。而且,估计了醛醇型缩合反应中MOF的催化性能。在纳米级棒状催化剂中检测到高催化活性。

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