Functional group resolved NMR relaxation of 3-carbon adsorbates in mesoporous alumina

IF 1.7
Neil Robinson , Carmine D’Agostino , Michael L. Johns
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Abstract

NMR relaxation analysis provides a unique and non-invasive probe of fluid dynamics within porous materials, and may be applied to the interpretation of a wide variety of material and interfacial characteristics. Here, we report two-dimensional 1H T1T2 relaxation correlation measurements of a range of three-carbon adsorbates (1-propanol, 2-propanol and propanoic acid) imbibed within the mesoporous metal oxide gamma-alumina. Our data, acquired across field strengths of 2 MHz, 12.7 MHz and 43 MHz, clearly reveal two populations in each measurement, identified as the alkyl and hydroxyl moieties of each adsorbate. These results expand the range of materials in which such functional group resolved relaxation is known to occur, and demonstrate the clear persistence of such phenomena using a range of typical benchtop NMR systems employed to study fluid-saturated porous media.

Abstract Image

3-碳吸附质在介孔氧化铝中的官能团分辨NMR弛豫
核磁共振弛豫分析为多孔材料内的流体动力学提供了一种独特的非侵入性探针,可以应用于各种材料和界面特性的解释。在这里,我们报告了在介孔金属氧化物γ -氧化铝中吸收的一系列三碳吸附剂(1-丙醇,2-丙醇和丙酸)的二维1H T1−T2弛豫相关测量。我们的数据,在2 MHz, 12.7 MHz和43 MHz的场强中获得,清楚地揭示了每个测量中的两个种群,确定为每个吸附质的烷基和羟基部分。这些结果扩大了已知发生这种官能团分解弛豫的材料的范围,并使用一系列用于研究流体饱和多孔介质的典型台式核磁共振系统证明了这种现象的清晰持久性。
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来源期刊
Magnetic Resonance Letters
Magnetic Resonance Letters Analytical Chemistry, Spectroscopy, Radiology and Imaging, Biochemistry, Genetics and Molecular Biology (General)
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