异核薄膜核磁共振方法

R.W. Singerman , R.C. Richardson
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引用次数: 1

摘要

讨论了19f基和1h基薄膜的制备和分析,以及用于研究它们的核磁共振技术。综述了无序介质中的异核磁化转移结果对有序薄膜技术发展的推动作用。介绍了薄膜实验的实验装置和样品几何形状,并讨论了薄膜制备和厚度测量技术。介绍了通过改变外加磁场对核磁共振波谱仪进行线圈调谐和降低死区时间的技术。对于由0.5 μm薄膜组成的样品,无需信号平均即可获得自旋回波。在0.5 K的温度下,在薄膜中测量了1分钟左右的t1值。这些技术在研究膜蛋白的表面交叉弛豫和核磁共振方面尤其有用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methods for Heteronuclear Thin-Film NMR

The fabrication and analysis of19F-based and1H-based thin films and the NMR techniques employed for studying them are discussed. The heteronuclear magnetization transfer results in disordered media that motivated the development of the ordered thin-film techniques are summarized. The experimental setup and sample geometry for the thin-film experiments are described, and the techniques for thin-film preparation and thickness measurement are discussed. For the NMR spectrometer, coil tuning via changing the applied magnetic field and the techniques employed for lowering the dead time are described. No signal averaging was required to obtain spin echoes from a sample composed of 0.5 μm thin films.T1values on the order of one minute were measured in the thin films at a temperature of 0.5 K. These techniques should be of particular use in studying cross relaxation at surfaces and NMR of membrane proteins.

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