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通过魔角旋转下质子库的渐进饱和增强超宽线核磁共振的灵敏度

Sensitivity Enhancement of Ultra-Wideline NMR by Progressive Saturation of the Proton Reservoir Under Magic-Angle Spinning.

作者信息

Wolf Tamar, Goobes Yuval, Frydman Lucio

机构信息

Department of Chemical and Biological Physics, Weizmann Institute of Science, Rehovot, 7610001, Israel.

出版信息

Chemphyschem. 2024 Oct 1;25(19):e202400613. doi: 10.1002/cphc.202400613. Epub 2024 Sep 21.

DOI:10.1002/cphc.202400613
PMID:39101285
Abstract

Solid-state NMR of low-γ nuclides is often characterized by low sensitivity and by significant spectral broadenings induced by the quadrupolar and the chemical-shift anisotropy interactions. Herein, we introduce an indirect acquisition method, termed PROgressive Saturation of the Proton Reservoir Under Spinning (PROSPRUS), which could facilitate the acquisition of ultra-wideline NMR spectra under magic-angle spinning (MAS), in systems with a sufficiently long dipolar relaxation time, T. PROSPRUS NMR relies on the generation of so-called second-order dipolar order among abundant protons undergoing MAS, and on the subsequent depletion of this dipolar order by a series of looped cross-polarization events, transferring the proton order into polarization of the low-γ I-nuclei as a function of the latter's offsets. While the spin dynamics of the ensuing experiment is complex, particularly when dealing with narrow I spectral lines, it is shown that PROSPRUS can lead to faithful lineshapes for ultra-wideline spin-1/2 and spin-1 species, providing high sensitivity with extremely low RF power requirements. It is also shown that the ensuing H-detected PROSPRUS experiments can efficiently characterize I-spin lineshapes in excess of 1 MHz without having to retune electronics, while providing improvements in sensitivity per unit time over current broadband direct-detection methods by up to a factor of four.

摘要

低γ核素的固态核磁共振通常具有灵敏度低以及由四极相互作用和化学位移各向异性相互作用引起的显著谱线展宽的特点。在此,我们介绍一种间接采集方法,称为旋转下质子库的渐进饱和(PROSPRUS),在具有足够长的偶极弛豫时间T的系统中,该方法有助于在魔角旋转(MAS)下采集超宽线核磁共振谱。PROSPRUS核磁共振依赖于在进行MAS的大量质子中产生所谓的二阶偶极序,并通过一系列循环交叉极化事件随后耗尽这种偶极序,将质子序作为低γ I核的偏移量的函数转移到其极化中。虽然后续实验的自旋动力学很复杂,特别是在处理窄的I谱线时,但结果表明,PROSPRUS可以为超宽线自旋1/2和自旋1物种带来逼真的线形,以极低的射频功率要求提供高灵敏度。还表明,随后的H检测PROSPRUS实验可以在无需重新调整电子设备的情况下有效地表征超过1 MHz的I自旋线形,同时与当前的宽带直接检测方法相比,每单位时间的灵敏度提高了四倍。

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