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Substituents Effects of Organic Linkers on Rotational Energy Barriers in Metal-Organic Frameworks

机译:有机接头对金属有机框架旋转能屏障的影响

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Metal-organic frameworks (MOFs) are a new kind of solid porous materials built from metal cations and organic bridging linkers or ligands. We considered a model MOF system using various organic linkers with Zn2+ cations, and studied their equilibrium geometry, structure, potential energy curves (PECs), rotational dynamics, and rotational barriers of the linkers by employing first-principles based DFT methods. We investigated the rotational and dynamical behaviors of the organic linkers in the MOFs. We found that the structural parameters and rotational barrier of the model MOF containing 1,4-benzendi- carboxylate (BDC) linker are in excellent agreement with previous experiments. The B3LYP rotational energy barrier of the model MOF containing 1,4-naphthalenedicarboxylate (NDC) linker makes a replica of the previous experimental value. The present computation found that the rotational energy barriers differ considerably depending on the linkers and the substitu- ent effects on them, oscillating from the largest barrier 56.5 kJ/ mol (for BDC) to the lowest one 15.3 kJ/mol (for 2,3,5,6- tetrafluoro-1,4-benzenedicarboxylate (TFBDC)). This study ex- pands the opportunity of innovative reticular material chemistry to design novel flexible MOFs with ultrahigh working capacity and small rotational barrier to include linkers having the common acrylate connectivity. We envisage that this new class of MOFs with small rotational energy barrier will be beneficial in a variety of applications including H2-storage, gas storage and separation, adsorption, sensors, and many others.
机译:金属有机框架(MOF)是一种由金属阳离子和有机桥接接头或配体制造的新型固体多孔材料。我们考虑了使用带有Zn2+阳离子的各种有机接头的模型MOF系统,并研究了它们的平衡几何形状,结构,势能曲线(PEC),旋转动力学和接头的旋转屏障,并采用了基于第一原则的DFT方法。我们研究了MOF中有机接头的旋转和动力学行为。我们发现,含有1,4-苯并丁酯(BDC)接头的模型MOF的结构参数和旋转屏障与以前的实验非常吻合。含有1,4-萘二甲基酯(NDC)接头的MOF的B3LYP旋转能屏障,使得复制品的复制品是先前的实验值。目前的计算发现,旋转能屏障根据接头和对它们的取代影响有很大差异,从最大的屏障56.5 kJ/ mol(用于BDC)到最低的15.3 kJ/ mol(用于2,3的最低1.3 kJ/ mol) ,5,6-四氟-1,4-苯并二羧酸盐(TFBDC))。这项研究赋予了创新的网状材料化学化学的机会,以设计具有超高工作能力的新型柔性MOF和较小的旋转屏障,以包括具有共同丙烯酸酯连接性的接头。我们设想,这种具有较小旋转能屏障的新型MOF将在多种应用中有益于H2存储,气体存储和分离,吸附,传感器等。

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