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任意维度的单扫描核磁共振光谱学。

Single-scan NMR spectroscopy at arbitrary dimensions.

作者信息

Shrot Yoav, Frydman Lucio

机构信息

Department of Chemical Physics, Weizmann Institute of Science, 76100 Rehovot, Israel.

出版信息

J Am Chem Soc. 2003 Sep 17;125(37):11385-96. doi: 10.1021/ja0350785.

Abstract

Multidimensional nuclear magnetic resonance (NMR) provides one of the foremost analytical tools available to elucidate the structure and dynamics of complex molecules in their native states. Executing this kind of experiment generally requires collecting an n-dimensional time-domain signal S, from which the spectrum arises via an appropriate Fourier analysis of its various time variables. This time-domain signal is actually measured directly only along one of the time axes, while the effects introduced by the remaining time variables are monitored via a parametric incrementation of their values throughout independent experiments. Two-dimensional (2D) NMR experiments thus usually require longer acquisition times than unidimensional experiments, 3D NMR is orders-of-magnitude more time consuming than 2D spectroscopy, etc. Very recently, we proposed and demonstrated an approach whereby data acquisition in 2D NMR can be parallelized, enabling the collection of complete 2D spectral sets within a single transient. The present paper discusses the extension of this 2D NMR methodology to an arbitrary number of dimensions. The principles of the ensuing ultrafast n-dimensional NMR approach are described, and a variety of homo- and heteronuclear 3D and 4D NMR spectra collected within a fraction of a second are presented.

摘要

多维核磁共振(NMR)提供了最重要的分析工具之一,可用于阐明复杂分子在其天然状态下的结构和动力学。进行这类实验通常需要采集一个n维时域信号S,通过对其各个时间变量进行适当的傅里叶分析,从该信号中得到频谱。实际上,这个时域信号仅沿着其中一个时间轴直接测量,而其余时间变量引入的效应则通过在独立实验中对其值进行参数递增来监测。因此,二维(2D)NMR实验通常比一维实验需要更长的采集时间,三维NMR比二维光谱学耗时多几个数量级,等等。最近,我们提出并证明了一种方法,通过该方法可以并行化二维NMR中的数据采集,从而能够在单个瞬态内收集完整的二维光谱集。本文讨论了将这种二维NMR方法扩展到任意维度的情况。描述了由此产生的超快n维NMR方法的原理,并展示了在几分之一秒内采集的各种同核和异核三维及四维NMR光谱。

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