首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Molecular Relaxation Processes in a MOF-5 Structure Revealed by Broadband Dielectric Spectroscopy: Signature of Phenylene Ring Fluctuations
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Molecular Relaxation Processes in a MOF-5 Structure Revealed by Broadband Dielectric Spectroscopy: Signature of Phenylene Ring Fluctuations

机译:宽带介电谱揭示的MOF-5结构中的分子弛豫过程:苯环波动的标志。

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摘要

The molecular mobility of a MOF-5 metal-organic framework was investigated by broadband dielectric spectroscopy. Three relaxation processes were revealed. The temperature dependence of their relaxation rates follows an Arrhenius law. The process observed at lower temperatures is attributed to bending fluctuations of the edges of the cages involving the Zn-O clusters. The processes ("region II") at higher temperatures were assigned to fluctuations of phenyl rings in agreement with the NMR data found by Gould et al. (J. Am. Chem. Soc. 2008, 130, 3246). The carboxylate groups might also be involved. The rotational fluctuations of the phenyl rings leading to the low frequency part of relaxation region II might be hindered either by some solvent molecules entrapped in the cages or by an interpenetrated structure and have a broad distribution of activation energies. The high frequency part of region II corresponds nearly to a Debye-like process: This is explained by a well-defined structure of empty pores.
机译:通过宽带介电谱研究了MOF-5金属有机骨架的分子迁移率。揭示了三个松弛过程。它们的弛豫速率对温度的依赖性遵循阿伦尼乌斯定律。在较低温度下观察到的过程归因于涉及Zn-O团簇的笼子边缘的弯曲波动。与Gould等人发现的NMR数据一致,将较高温度下的过程(“区域II”)指定为苯环的波动。 (J.Am.Chem.Soc.2008,130,3246)。羧酸酯基也可能涉及。导致弛豫区II的低频部分的苯环的旋转波动可能会被滞留在笼中的某些溶剂分子或互穿结构所阻碍,并具有广泛的活化能分布。 II区的高频部分几乎对应于Debye式过程:这可以通过明确定义的空孔结构来解释。

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