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首页> 外文期刊>Angewandte Chemie >HyperBIRD: A Sensitivity-Enhanced Approach to Collecting Homonuclear-Decoupled Proton NMR Spectra
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HyperBIRD: A Sensitivity-Enhanced Approach to Collecting Homonuclear-Decoupled Proton NMR Spectra

机译:HyperBIRD:灵敏度高的方法,以收集纯核解耦质子NMR光谱。

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摘要

Samples prepared following dissolution dynamic nuclear polarization (DNP) enable the detection of NMR spectra from low- nuclei with outstanding sensitivity, yet have limited use for the enhancement of abundant species like (1)Hnuclei. Small- and intermediate-sized molecules, however, show strong heteronuclear cross-relaxation effects: spontaneous processes with an inherent isotopic selectivity, whereby only the C-13-bonded protons receive a polarization enhancement. These effects are here combined with a recently developed method that delivers homonuclear-decoupled (1)Hspectra in natural abundance samples based on heteronuclear couplings to these same, C-13-bonded nuclei. This results in the HyperBIRD methodology; a single-shot combination of these two effects that can simultaneously simplify and resolve complex, congested (HNMR)-H-1 spectra with many overlapping spin multiplets, while achieving 50-100 times sensitivity enhancements over conventional thermal counterparts.
机译:溶解动态核极化(DNP)后制备的样品能够以出色的灵敏度检测低核的NMR光谱,但用于增强(1)Hnuclei等丰富物种的用途有限。但是,中小分子显示出强大的异核交叉弛豫效应:具有固有同位素选择性的自发过程,因此只有C-13键合的质子会得到极化增强。这些影响在这里与最近开发的方法相结合,该方法基于与这些C-13键合的相同核的异核偶联,在自然丰度样品中提供了同核去耦的(1)H光谱。这导致了HyperBIRD方法学的发展。这两种效果的单次组合可以同时简化和解决具有许多重叠的自旋多重峰的复杂拥塞(HNMR)-H-1光谱,同时实现比传统热对应物高50-100倍的灵敏度。

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