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首页> 外文期刊>Angewandte Chemie >Recovering Invisible Signals by Two-Field NMR Spectroscopy
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Recovering Invisible Signals by Two-Field NMR Spectroscopy

机译:通过双场NMR光谱恢复无形信号

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摘要

Nuclear magnetic resonance (NMR) studies have benefited tremendously from the steady increase in the strength of magnetic fields. Spectacular improvements in both sensitivity and resolution have enabled the investigation of molecular systems of rising complexity. At very high fields, this progress may be jeopardized by line broadening, which is due to chemical exchange or relaxation by chemical shift anisotropy. In this work, we introduce a two-field NMR spectrometer designed for both excitation and observation of nuclear spins in two distinct magnetic fields in a single experiment. NMR spectra of several small molecules as well as a protein were obtained, with two dimensions acquired at vastly different magnetic fields. Resonances of exchanging groups that are broadened beyond recognition at high field can be sharpened to narrow peaks in the low-field dimension. Two-field NMR spectroscopy enables the measurement of chemical shifts at optimal fields and the study of molecular systems that suffer from internal dynamics, and opens new avenues for NMR spectroscopy at very high magnetic fields.
机译:核磁共振(NMR)研究从磁场强度的稳步增加,从稳定增长受益匪浅。敏感性和分辨率的壮观改善使得调查了复杂性上升的分子系统。在非常高的领域,通过线宽化可能被危及,这是由于化学换档各向异性的化学交换或弛豫。在这项工作中,我们介绍了一种双场NMR光谱仪,设计用于两个实验中的两个不同磁场中的核旋转的激励和观察。获得几种小分子以及蛋白质的NMR光谱,在很不同磁场中获得了两个尺寸。在高场识别的交换基团的交换的共振可以锐化到低场尺寸的窄峰。双场NMR光谱能够在最佳领域进行化学位移,以及患有内部动力学的分子系统的研究,并在非常高的磁场下打开NMR光谱的新途径。

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