Shrot Yoav, Tal Assaf, Frydman Lucio
Department of Chemical Physics, Weizmann Institute of Science, 76100 Rehovot, Israel.
Magn Reson Chem. 2009 May;47(5):415-22. doi: 10.1002/mrc.2403.
Single-scan 2D NMR relies on a spatial axis for encoding the indirect-domain internal spin interactions. Various strategies have been demonstrated for fulfilling the needs underlying this procedure. All such schemes use gradient-echoed sequences that leave at their conclusion solely the effects of the internal interactions along the indirect domain; they also include a real-time scheme that though simple, yields in general mixed-phase line shapes. The present paper introduces two new proposals geared up for easing the spatial encoding underlying single-scan 2D NMR methodologies. One of these is capable of delivering dispersive-free peaks along the indirect domain, and thereby purely-absorptive 2D line shapes, in amplitude-encoded experiments. The other demonstrates for the first time, the possibility to obtain single-scan 2D spectra without echoing the effects of the encoding gradient-simply by applying a single-pulse frequency sweep to encode the interactions. Both of these modes are compatible with homo- and heteronuclear correlations, and exhibit a number of complementary features vis-à-vis encoding alternatives that have so far been presented. The overall principles underlying these new spatially encoding protocols are derived, and their performance demonstrated with single-scan 2D NMR TOCSY and HSQC experiments on model compounds.
单扫描二维核磁共振依赖于一个空间轴来编码间接域内的自旋相互作用。为满足此过程的潜在需求,已展示了各种策略。所有此类方案都使用梯度回波序列,这些序列在结束时仅留下沿间接域的内部相互作用的影响;它们还包括一种实时方案,该方案虽然简单,但通常会产生混合相位线形。本文介绍了两种新的提议,旨在简化单扫描二维核磁共振方法中的空间编码。其中一种能够在幅度编码实验中沿间接域提供无色散峰,从而得到纯吸收二维线形。另一种首次展示了仅通过应用单脉冲频率扫描来编码相互作用,就有可能在不回波编码梯度影响的情况下获得单扫描二维谱。这两种模式都与同核和异核相关性兼容,并且相对于迄今提出的编码替代方案具有许多互补特征。推导了这些新的空间编码协议的总体原理,并通过对模型化合物进行单扫描二维核磁共振TOCSY和HSQC实验来证明其性能。