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Homo- and heteronuclear two-dimensional covariance solid-state NMR spectroscopy with a dual-receiver system

机译:具有双接收器系统的同核和异核二维协方差固态NMR光谱

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摘要

Two-dimensional (2D) covariance NMR spectroscopy, which has originally been established to extract homonuclear correlations (HOMCOR), is extended to include heteronuclear correlations (HETCOR). In a ~(13)C/~(15)N 2D chemical shift correlation experiment, ~(13)C and ~(15)N signals of a polycrystalline sample of ~(13)C, ~(15)N-labeled amino acid are acquired simultaneously using a dual-receiver NMR system. The data sets are rearranged for the covariance data processing, and the ~(13)C-~(15)N heteronuclear correlations are obtained together with the ~(13)C-~(13)C and ~(15)N-~(15)N homonuclear correlations. The present approach retains the favorable feature of the original covariance HOMCOR that the spectral resolution along the indirect dimension is given by that of the detection dimension. As a result, much fewer amounts of data are required to obtain a well-resolved 2D spectrum compared to the case of the conventional 2D Fourier-Transformation (FT) scheme. Hence, one can significantly save the experimental time, or enhance the sensitivity by increasing the number of signal averaging within a given measurement time.
机译:二维(2D)协方差NMR光谱仪(最初建立用于提取同核相关性(HOMCOR))已扩展为包括异核相关性(HETCOR)。在〜(13)C /〜(15)N 2D化学位移相关实验中,〜(13)C,〜(15)N标记的氨基的多晶样品的〜(13)C和〜(15)N信号使用双接收器NMR系统同时采集酸。重新安排数据集以进行协方差数据处理,并获得〜(13)C-〜(15)N异核相关性以及〜(13)C-〜(13)C和〜(15)N-〜 (15)N同核相关。本方法保留了原始协方差HOMCOR的有利特征,即沿间接维的光谱分辨率由检测维的光谱分辨率给出。结果,与常规2D傅立叶变换(FT)方案的情况相比,获得良好分辨的2D光谱所需的数据量要少得多。因此,可以通过增加给定测量时间内的平均信号数量来显着节省实验时间或提高灵敏度。

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