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Dimensionality Transformation through Paddlewheel Reconfiguration in a Flexible and Porous Zn-Based Metal-Organic Framework

机译:通过基于多孔多孔锌基金属-有机框架的Pad轮重构进行尺寸转换

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摘要

The reaction between Zn and a pyrene-based ligand decorated with benzoate fragments (H_4TBAPy) yields a 2D layered porous network with the metal coordination based on a paddlewheel motif. Upon desolvation, the structure undergoes a significant and reversible structural adjustment with a corresponding reduction in crystallinity. The combination of computationally assisted structure determination and experimental data analysis of the desolvated phase revealed a structural change in the metal coordination geometry from square-pyramidal to tetrahedral. Simulations of desolvation showed that the local distortion of the ligand geometry followed by the rotation and displacement of the pyrene core permits the breakup of the metal-paddlewheel motifs and the formation of 1D Zn-O chains that cross-link adjacent layers, resulting in a dimensionality change from the 2D layered structure to a 3D structure. Constrained Rietveld refinement of the powder X-ray diffraction pattern of the desolvated phase and the use of other analytical techniques such as porosity measurements, ~(13)C CP MAS NMR spectroscopy, and fluorescence spectroscopy strongly supported the observed structural transformation. The 3D network is stable up to 425℃ and is permanently porous to CO_2 with an apparent BET surface area of 523(8) m~2/g (p/p° = 0.02-0.22). Because of the hydrophobic nature, size, and shape of the pores of the 3D framework, the adsorption behavior of the structure toward p-xylene and m-xylene was studied, and the results indicated that the shape of the isotherm and the kinetics of the adsorption process are determined mainly by the shape of the xylene isomers, with each xylene isomer interacting with the host framework in a different manner.
机译:Zn与装饰有苯甲酸酯片段的H基配体之间的反应(H_4TBAPy)产生2D层状多孔网络,其金属配位基于桨轮图案。脱溶剂后,结构会发生明显且可逆的结构调整,结晶度相应降低。计算辅助的结构确定与去溶剂化相的实验数据分析相结合,揭示了金属配位几何结构从方锥体到四面体的结构变化。去溶剂化的模拟表明,配体几何形状的局部变形,然后是core核的旋转和位移,使金属桨轮图案断裂,并形成与相邻层交联的一维Zn-O链,从而形成尺寸从2D分层结构更改为3D结构。溶剂化粉末相的粉末X射线衍射图的Rietveld精细化以及使用其他分析技术(例如孔隙率测量,〜(13)C CP MAS NMR光谱和荧光光谱)强烈支持了观察到的结构转变。 3D网络在高达425℃的温度下是稳定的,并且对CO_2永久具有多孔性,其BET比表面积为523(8)m〜2 / g(p / p°= 0.02-0.22)。由于3D骨架的孔具有疏水性,大小和形状,因此研究了该结构对对二甲苯和间二甲苯的吸附行为,结果表明等温线的形状和动力学吸附过程主要取决于二甲苯异构体的形状,每种二甲苯异构体以不同的方式与主体骨架相互作用。

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  • 来源
    《Journal of the American Chemical Society》 |2012年第50期|20466-20478|共13页
  • 作者单位

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Northern Carbon Research Laboratories, Sir Joseph Swan Institute and School of Chemical Engineering and Advanced Materials,Bedson Building, Newcastle University, Newcastle upon Tyne NE1 7RU, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

    Northern Carbon Research Laboratories, Sir Joseph Swan Institute and School of Chemical Engineering and Advanced Materials,Bedson Building, Newcastle University, Newcastle upon Tyne NE1 7RU, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.,School of Chemistry, University of Southampton, Highfield,Southampton SO17 1BJ, U.K.;

    Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, U.K.;

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  • 入库时间 2022-08-18 03:13:42

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