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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Liquid self-diffusion of H2O and DMF molecules in Co-MOF-74: molecular dynamics simulations and dielectric spectroscopy studies
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Liquid self-diffusion of H2O and DMF molecules in Co-MOF-74: molecular dynamics simulations and dielectric spectroscopy studies

机译:Co-MOF-74中H2O和DMF分子的液体自扩散:分子动力学模拟和介电谱研究

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In this work we use molecular dynamics simulations to study the diffusion of N, N-dimethylformamide (DMF) and H2O as a function of temperature within the well-known metal- organic framework Co-2(dobdc)center dot[G] (G = 2DMF center dot 1H(2)O), also known as Co-MOF-74. The molecular dynamics simulations show that the diffusivity of guest molecules, which is almost negligible at low temperatures (T < 200 K), increases in the range of 200 < T (K) < 400 up to 3 and 4 orders of magnitude for DMF and H2O, respectively. This molecular diffusion can be easily detected by dielectric spectroscopy as it gives rise to extrinsic interfacial polarization effects that result in an apparent ''colossal'' dielectric constant at room temperature, epsilon(r)' similar to 42 000 (T = 300 K, nu = 10 Hz). Furthermore, the measured dielectric constant exhibits a thermal dependence similar to that of the diffusion coefficient, revealing the parallelism of the dielectric response and the molecular diffusion as a function of temperature. These results highlight: (a) the great utility of the fast and non-destructive dielectric and impedance spectroscopy techniques for the study and detection of the molecular transport of small polar molecules within porous metal-organic frameworks and related materials; (b) the peculiarity and uniqueness of MOF materials with ''medium'' size nanopores containing guest molecules as they are solid materials in which the guest molecules display a liquid state-like behaviour close to room temperature; and (c) the potential of these materials for molecular transport applications.
机译:在这项工作中,我们使用分子动力学模拟来研究N,N-二甲基甲酰胺(DMF)和H2O在众所周知的金属-有机骨架Co-2(dobdc)中心点[G](G = 2DMF中心点1H(2)O),也称为Co-MOF-74。分子动力学模拟表明,客体分子的扩散率(在低温(T <200 K)下几乎可以忽略不计)在DMF和DMF的3和4个数量级的范围内在200

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