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Proton line narrowing in solid-state nuclear magnetic resonance:New insights from windowed phase-modulated Lee-Goldburg sequence

机译:固态核磁共振中质子谱线的变窄:窗相调制的Lee-Goldburg序列的新见解

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摘要

We present here a bimodal Floquet analysis of the windowed phase-modulated Lee-Goldburg (wPMLG) sequence for homonuclear dipolar decoupling.One of the main criteria for an efficient homonuclear dipolar decoupling scheme is an effective z-rotation condition.This is brought about by the presence of radio-frequency imperfections in the pulse sequence together with a systematic manipulation of the wPMLG pulses.Additional improvement in the ~1H spectral resolution was obtained by a proper understanding of the off-resonance dependence of the wPMLG irradiation scheme based on bimodal Floquet theory.Numerical investigations further corroborate both theoretical and experimental findings.Theoretical analysis points to accidental degeneracies between the cycle time of the wPMLG sequence and the rotor period leading to the experimentally observed off-resonance dependence of the resolution.Two-dimensional ~1H-~1H homonuclear single-quantum correlation spectra of model amino acids are also presented,highlighting the improved spectral resolution of wPMLG sequences.
机译:我们在此提出窗口化相位调制Lee-Goldburg(wPMLG)序列对同核偶极解耦的双峰Floquet分析,有效的同核偶极解耦方案的主要标准之一是有效的z旋转条件。脉冲序列中存在射频缺陷以及对wPMLG脉冲的系统操纵。通过正确理解基于双峰Floquet的wPMLG辐照方案的非共振相关性,获得了〜1H光谱分辨率的进一步改善。数值研究进一步证实了理论和实验结果。理论分析指出wPMLG序列的循环时间与转子周期之间的偶然退化,导致实验观察到的分辨率的非共振依赖性二维〜1H-〜还给出了模型氨基酸的1H同核单量子相关光谱,突出显示了wPMLG序列的更高的光谱分辨率。

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