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Xenon porometry at room temperature

机译:室温下的氙孔度法

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Xenon porometry is a method in which porous material is immersed in a medium and the properties of the material are studied by means of Xe-129 nuclear magnetic resonance (NMR) of xenon gas dissolved in the medium. For instance, the chemical shift of a particular signal (referred to as signal D) arising from xenon inside small pockets formed in the pores during the freezing of the confined medium is highly sensitive to the pore size. In the present study, we show that when naphthalene is used as the medium the pore size distribution of the material can be determined by measuring a single one-dimensional spectrum near room temperature and converting the chemical shift scale of signal D to the pore radius scale by using an experimentally determined correlation. A model has been developed that explains the curious behavior of the chemical shift of signal D as a function of pore radius. The other signals of the spectra measured at different temperatures have also been identified, and the influence of xenon pressure on the spectra has been studied. For comparison, Xe-129 NMR spectra of pure xenon gas adsorbed to porous materials have been measured and analyzed. (c) 2006 American Institute of Physics.
机译:氙气孔法是一种将多孔材料浸入介质中,并利用氙气溶解在介质中的氙气的Xe-129核磁共振(NMR)来研究材料性能的方法。例如,在密闭介质的冷冻期间,由氙在孔中形成的小袋内产生的特定信号(称为信号D)的化学位移对孔径高度敏感。在本研究中,我们表明,当使用萘作为介质时,可以通过测量室温附近的一个一维光谱并将信号D的化学位移尺度转换为孔半径尺度来确定材料的孔径分布通过使用实验确定的相关性。已经开发了一个模型,该模型解释了信号D的化学位移随孔半径变化的奇怪行为。还确定了在不同温度下测得的光谱的其他信号,并研究了氙气压力对光谱的影响。为了比较,已经测量并分析了吸附在多孔材料上的纯氙气的Xe-129 NMR光谱。 (c)2006年美国物理研究所。

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