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Molecular modeling of zinc paddlewheel molecular complexes and the pores of a flexible metal organic framework

机译:锌桨轮分子配合物和柔性金属有机骨架孔的分子模拟

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摘要

A new all-atom first-principles force field (FF) is constructed for the bimetallic, four-bladed zinc paddlewheel (ZPW) motif. Zinc-ligand interactions are described via Morse functions and the angular geometry at the metal centers is modeled with a pure ligand-ligand repulsion term. The ZPW-FF is principally based on 15 DFT-optimized model systems of general formula ZnPR.nL, where ZnP is the base Zn2(O2CR)4 unit, R = H, CH3 or CF3, L = NH3 or pyridine, and n = 0, 1 or 2. It correctly generates the distorted tetrahedral coordination of the uncapped [Zn2(O2CR)4] species in their ground states as well as giving reasonable structures and energies for the higher symmetry D4h transition state conformations. The zinc-ligand Morse function reference distance, r0, is further refined against 30 complexes located in the Cambridge Structural Database and this FF is applied to pore models of the flexible metal-organic framework (MOF) [Zn(bdc)2(dabco)]n (bdc = 1,4-benzendicarboxylate; dabco = 1,4-diazabicyclo(2.2.2)octane). A single pore model reproduces the unit cell of the evacuated MOF system while a 3×3 grid model is necessary to provide good agreement with the observed pronounced structural changes upon adsorption of either dimethylformamide or benzene.>Graphical AbstractStructural simulations of a zinc paddlewheel metal organic framework reproduce the observed breathing behaviour
机译:针对双金属,四叶锌桨轮(ZPW)主题构造了一个新的全原子第一原理力场(FF)。锌-配体相互作用通过莫尔斯函数进行描述,金属中心的角几何结构用纯的配体-配体排斥项建模。 ZPW-FF主要基于15个DFT优化的通式ZnPR.nL的模型系统,其中ZnP是基本Zn2(O2CR)4单元,R = H,CH3或CF3,L = NH3或吡啶,n = 0、1或2。它可以正确地生成未封端的[Zn2(O2CR)4]物种处于基态的扭曲四面体配位,并为较高的对称D4h过渡态构象提供合理的结构和能量。锌配体摩尔斯函数参考距离r0进一步针对位于剑桥结构数据库中的30个络合物进行了精炼,并且将该FF用于柔性金属-有机骨架(MOF)[Zn(bdc)2(dabco) ] n(bdc = 1,4-苯二甲酸二甲酯; dabco = 1,4-二氮杂双环(2.2.2)辛烷)。单孔模型可再现真空MOF系统的晶胞,而3×3网格模型则必须与吸附二甲基甲酰胺或苯时观察到的明显结构变化保持良好一致性。<!-图ft0-> < !-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchored” f5-> >图形摘要<!-fig / graphic | fig / alternatives / graphic模式=“ anchored” m1-> <!-标题a7->锌桨金属有机框架的结构模拟再现了观察到的呼吸行为

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