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首页> 外文期刊>The Journal of Chemical Physics >Diffusion of guest molecules in MCM-41 agglomerates
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Diffusion of guest molecules in MCM-41 agglomerates

机译:客体分子在MCM-41团聚体中的扩散

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摘要

The pulsed field gradient nuclear magnetic resonance method has been used to study self-diffusion of cyclohexane in a commercial MCM-41 material at different external gas pressures from zero to saturated vapor pressure.It is found that the effective diffusivities exhibit three different regions with increasing pressure:decrease at low pressures,a sudden drop at intermediate pressures,and increase at higher pressures.In addition,in the region of irreversible adsorption (hysteresis loop) the diffusivities are also found to differ on the adsorption and the desorption branches.A simple analytical model taking account of different molecular ensembles with different transport properties due to the complex architecture of the porous structure is developed which provides a quantitative prediction of the experimental data.The analysis reveals that the effective diffusivity is predominantly controlled by the adsorption properties of the individual mesoporous MCM-41 crystallites which,in combination with high transport rates,provide a simple instrument for fine tuning of the transport properties by a subtle variation of the external conditions.
机译:脉冲场梯度核磁共振法已被用于研究环己烷在商用MCM-41材料中在零至饱和蒸气压下的不同外部气压下的自扩散,发现有效扩散率随扩散率呈现出三个不同的区域压力:在低压下减小,在中压下突然下降,在高压下增加。此外,在不可逆吸附(磁滞回线)区域,在吸附和解吸分支上的扩散率也有所不同。由于多孔结构的复杂结构,建立了考虑到具有不同传输性质的不同分子集合的分析模型,该模型为实验数据提供了定量预测。分析表明,有效扩散率主要受个体吸附特性的控制。组合的中孔MCM-41晶体高传输速率的离子提供了一种简单的仪器,可通过外部条件的细微变化来微调传输性能。

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