首页> 外文期刊>The Journal of Chemical Physics >QUENCHED MOLECULAR REORIENTATION AND ANGULAR MOMENTUM FOR LIQUIDS CONFINED TO NANOPORES OF SILICA GLASSES
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QUENCHED MOLECULAR REORIENTATION AND ANGULAR MOMENTUM FOR LIQUIDS CONFINED TO NANOPORES OF SILICA GLASSES

机译:二氧化硅玻璃纳米孔液体的猝灭分子取向和角动量

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The results of a theoretical and experimental study of the confinement effects on molecular dynamics of nonpolar liquids in porous silica glasses prepared by the sol-gel process are discussed. The natural abundance C-13 and S-33 NMR spin-lattice relaxation times of liquid CS2 are reported as a function of pore radius in the range from 15 Angstrom to 102 Angstrom over the temperature range of 168 K to 293 K. Since spin-rotation interactions dominate the C-13 relaxation at higher temperatures these experiments allowed us for the first time to follow the confinement effects on angular momentum correlation times. The low-temperature C-13 T-1 data and the S-33 T-1 data provide information about reorientational motions. In order to interpret the experimental NMR relaxation data, a theoretical model for anisotropic molecular reorientation and angular velocity, which accounts for the motional behavior of nonpolar liquids confined to nanopores, is proposed. This model predicts an increase of the reorientational and angular momentum correlation times when the pore size is decreased. Application of this theoretical model to the interpretation of the CS2 NMR relaxation data and to earlier relaxation results obtained for confined nonpolar cydohexane-d(12) liquid proved successful. (C) 1997 American Institute Physics. [References: 22]
机译:讨论了对通过溶胶-凝胶法制备的多孔石英玻璃中非极性液体的分子动力学的限制作用的理论和实验研究结果。据报道,在168 K至293 K的温度范围内,液体CS2的自然丰度C-13和S-33 NMR自旋晶格弛豫时间与孔半径的函数相关,范围为15埃至102埃。在更高的温度下,旋转相互作用主导了C-13的弛豫,这些实验使我们首次了解了角动量相关时间的限制效应。低温C-13 T-1数据和S-33 T-1数据提供有关重新定向运动的信息。为了解释实验的NMR弛豫数据,提出了各向异性分子重新定向和角速度的理论模型,该模型考虑了局限于纳米孔的非极性液体的运动行为。该模型预测,当孔径减小时,方向性和角动量相关时间会增加。该理论模型的应用CS2 NMR弛豫数据的解释和局限非极性环己烷-d(12)液体获得的早期弛豫结果证明是成功的。 (C)1997美国物理研究所。 [参考:22]

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