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In Situ Monitoring of Diffusion of Guest Molecules in Porous Media Using Electron Paramagnetic Resonance Imaging

机译:电子顺磁共振成像原位监测客体分子在多孔介质中的扩散

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摘要

A method is demonstrated to monitor macroscopic translational diffusion using electron paramagnetic resonance (EPR) imaging. A host-guest system with nitroxide spin probe 3-(2-Iodoacetamido)-2,2,5,5-tetramethyl-1-pyrrolidinyloxy (IPSL) as a guest inside the periodic mesoporous organosilica (PMO) aerogel UKON1-GEL as a host and ethanol as a solvent is used as an example to describe the protocol. Data is shown from a previous publication, where the protocol has been applied to both IPSL and Tris(8-carboxy-2,2,6,6-perdeutero-tetramethyl-benzo[1,2-d:4,5-d′]bis(1,3)dithiole) methyl (Trityl) as guest molecules and UKON1-GEL and SILICA-GEL as host systems. A method is shown to prepare aerogel samples that cannot be synthesized directly in the sample tube for measurement due to a size change during synthesis. The aerogel is attached to sample tubes using heat shrink tubing and a pressure cooker to reach the necessary temperature without evaporating the solvent in the process. The method does not assume a clearly defined initial distribution of guest molecules at the start of the measurement. Instead, it requires a reservoir on top of the aerogel and experimentally determines the influx rate during data analysis.The diffusion is monitored continually over a period of 20 hr by recording the 1d spin density profile within the sample. The spectrometer settings for the imaging experiment are described quantitatively. Data analysis software is provided to take the resonator sensitivity profile into account and to numerically solve the diffusion equation. The software determines the macroscopic translational diffusion coefficient by least square minimization of the difference between the experiment and the numerical solution of the diffusion equation.
机译:演示了一种使用电子顺磁共振(EPR)成像监控宏观平移扩散的方法。在周期性介孔有机硅(PMO)气凝胶UKON1-GEL中以氮氧化物自旋探针3-(2-碘乙酰胺基)-2,2,5,5-四甲基-1-吡咯烷氧基(IPSL)作为来宾的客体系统以主机和乙醇为溶剂为例来描述该协议。数据显示自以前的出版物,该协议已同时应用于IPSL和Tris(8-羧基-2,2,6,6-全氘-四甲基-苯并[1,2-d:4,5-d' ] bis(1,3)dithiole)methyl(Trityl)作为客体分子,UKON1-GEL和SILICA-GEL作为宿主系统。显示了一种制备气凝胶样品的方法,该方法由于合成过程中的尺寸变化而无法直接在样品管中进行测量。使用热缩管和压力锅将气凝胶固定在样品管上,以达到所需的温度,而过程中不会蒸发溶剂。在测量开始时,该方法未假定客体分子的初始定义明确。取而代之的是,它需要在气凝胶顶部有一个储层,并通过实验确定数据分析过程中的流入速率。通过记录样品中的1d自旋密度分布图,在20小时的时间内连续监测扩散。定量描述用于成像实验的光谱仪设置。提供了数据分析软件,以考虑谐振器的灵敏度曲线并以数值方式求解扩散方程。该软件通过最小二乘最小化实验与扩散方程的数值解之间的差异来确定宏观平移扩散系数。

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