Department of Chemistry and Biochemistry, Boise State University, Boise, ID 83725, USA.
J Magn Reson. 2012 May;218:147-52. doi: 10.1016/j.jmr.2012.02.012. Epub 2012 Mar 9.
The use of susceptibility matching to minimize spectral distortion of biphasic samples layered in a standard 5 mm NMR tube is described. The approach uses magic angle spinning (MAS) to first extract chemical shift differences by suppressing bulk magnetization. Then, using biphasic coaxial samples, magnetic susceptibilities are matched by titration with a paramagnetic salt. The matched phases are then layered in a standard NMR tube where they can be shimmed and examined. Linewidths of two distinct spectral lines, selected to characterize homogeneity in each phase, are simultaneously optimized. Two-dimensional distortion-free, slice-resolved spectra of an octanol/water system illustrate the method. These data are obtained using a 2D stepped-gradient pulse sequence devised for this application. Advantages of this sequence over slice-selective methods are that acquisition efficiency is increased and processing requires only conventional software.
本文介绍了一种使用磁化率匹配最小化标准 5mm NMR 管中双层双相样品谱线扭曲的方法。该方法首先使用魔角旋转(MAS)通过抑制体磁化来提取化学位移差异。然后,使用双相同轴样品,通过滴定顺磁盐来匹配磁化率。然后将匹配的相分层在标准 NMR 管中,对其进行调谐和检查。选择两个不同的谱线来表征每个相的均匀性,同时对其线宽进行优化。辛醇/水体系的二维无失真、切片分辨谱说明了该方法。这些数据是使用为此应用设计的二维分步梯度脉冲序列获得的。与切片选择方法相比,该序列具有以下优点:提高了采集效率,并且仅需要常规软件进行处理。