Saalwächter Kay, Schnell Ingo
Institut für Makromolekulare Chemie, Universität Freiburg. Stefan-Meier-Str. 31, D-79104 Freiburg, Germany.
Solid State Nucl Magn Reson. 2002 Sep-Nov;22(2-3):154-87. doi: 10.1006/snmr.2002.0079.
We review a variety of recently developed 1H-X heteronuclear recoupling techniques, which rely only on the homonuclear decoupling efficiency of very-fast magic-angle spinning. All these techniques, which are based on the simple rotational-echo, double-resonance (REDOR) approach for heteronuclear recoupling, are presented in a common context. Advantages and possibilities with respect to the complementary application of conventionally X and 1H-inversely detected variants are discussed in relation to the separability and analysis of multiple couplings. We present an improved and more sensitive approach to the determination of 1H-X dipolar couplings by spinning-sideband analysis, termed REREDOR, which is applicable to XHn groups in rigid and mobile systems and bears some similarity to more elaborate separated local-field methods. The estimation of medium-range 1H-X distances by analyzing signal intensities in two-dimensional REDOR correlation spectra in a model-free way is also discussed. More specifically, we demonstrate the possibility of combined distance and angle determination in H-X-H or X-H-X three-spin systems by asymmetric recoupling schemes and spinning-sideband analysis. Finally, an 1H-X correlation experiment is introduced which accomplishes high sensitivity by inverse (1H) detection and is therefore applicable to samples with 15N in natural abundance.
我们回顾了各种最近开发的1H-X异核重耦合技术,这些技术仅依赖于极快速魔角旋转的同核去耦效率。所有这些基于简单旋转回波双共振(REDOR)异核重耦合方法的技术,都在一个共同的背景下呈现。关于传统X和1H反向检测变体的互补应用在多耦合的可分离性和分析方面的优势和可能性进行了讨论。我们提出了一种通过旋转边带分析测定1H-X偶极耦合的改进且更灵敏的方法,称为REREDOR,它适用于刚性和移动系统中的XHn基团,并且与更精细的分离局部场方法有一些相似之处。还讨论了通过无模型方式分析二维REDOR相关谱中的信号强度来估计中程1H-X距离。更具体地说,我们展示了通过不对称重耦合方案和旋转边带分析在H-X-H或X-H-X三自旋系统中联合测定距离和角度的可能性。最后,介绍了一种1H-X相关实验,该实验通过反向(1H)检测实现高灵敏度,因此适用于天然丰度含15N的样品。