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Frequency-dependent NMR relaxation of liquids confined inside porous media containing an increased amount of magnetic impurities

机译:含铁量增加的封闭在多孔介质中的液体的随频率变化的NMR弛豫

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摘要

Frequency-dependent NMR relaxation studies have been carried out on water (polar) and cyclohexane (nonpolar) molecules confined inside porous ceramics containing variable amounts of iron oxide (III). The porous ceramics were prepared by compression of powders mixed with iron oxide followed by thermal treatment. The pore size distribution was estimated using a technique based on diffusion in internal fields that exposed a narrow distribution of macropore sizes with an average pore dimension independent of iron oxide content. The relaxation dispersion curves were obtained at room temperature using a fast field cycling NMR instrument. They display an increase of the relaxation rate proportional to the iron oxide concentration. This behavior is more prominent at low Larmor frequencies and is independent of the polar character of the confined molecules. The results reported here can be fitted well with a relaxation model considering exchange between molecules in the close vicinity of the paramagnetic centers located in the surface and bulk-like molecules inside the pores. This model allows the extraction of the transverse diffusional correlation time that can be related to the polar character of the confined molecules.
机译:已对水(极性)和环己烷(非极性)分子的频率依赖性NMR弛豫研究进行了研究,这些分子被限制在含有可变量氧化铁(III)的多孔陶瓷中。通过压缩与氧化铁混合的粉末,然后进行热处理来制备多孔陶瓷。使用基于在内部场中扩散的技术来估计孔径分布,该技术暴露出大孔尺寸的狭窄分布,平均孔径独立于氧化铁含量。使用快速场循环NMR仪器在室温下获得弛豫分散曲线。它们显示出与氧化铁浓度成比例的弛豫速率的增加。这种行为在低拉莫尔频率下更为突出,并且与受限分子的极性无关。考虑到位于表面的顺磁中心附近的分子与孔隙内的块状分子之间的交换,此处报道的结果可以很好地拟合松弛模型。该模型允许提取横向扩散相关时间,该时间可能与受限分子的极性有关。

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