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Investigating sensitivity improvement methods for quadrupolar nuclei in solid-state nuclear magnetic resonance

机译:研究固态核磁共振中四极核的灵敏度提高方法

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摘要

The study of quadrupolar nuclei using NMR spectroscopy in the solid state significantly increased in popularity from the end of the 20th century, with the introduction of specific methods to acquireudspectra free from the effects of the quadrupolar interaction, that results in broadened lineshapesudthat cannot be completely removed by spinning the sample at the magic angle (MAS), unlike mostudof the other interactions present in the solid state. The first technique which allows, without anyudspecific hardware, the removal of this broadening has been the Multiple-Quantum MQMAS experiment. The method quickly gained a popularity within the NMR community, with numerous successful applications published. However, the multiple-quantum filtration step in this experiment relies on severely limits sensitivity, restricting application to the most sensitive nuclei.ududExtending the applicability of MQMAS to less receptive nuclei requires the use of signal improvement techniques. There are multiple examples of such approaches in the literature, but most of these require additional optimisation that may be time-consuming, or simply impossible, on less receptive nuclei. This work introduces a novel signal improvement technique for MQMAS, called FAM-N. Its optimisation is solely based on density matrix simulations using SIMPSON, implying no additional experimental optimisation is required, while improving the signal in MQMAS spectra by equivalent or higher amounts than other common methods. In order to prove the applicability of this method on virtually any system, FAM-N has been investigated by simulation, and tested experimentally using a number of model samples, as well as samples known to be challenging to study by NMR.ududThis work also explores other aspects of NMR spectroscopy on quadrupolar nuclei. Adiabatic inversion of the satellite populations can be performed to improve the central transition signal in static or MAS spectra. A range of methods has been tested and compared, with particular attention given to hyperbolic secant-shaped pulses, for which its performance have been described. Finally, cross-polarisation from a spin I = 1/2 nucleus to a quadrupolar nucleus has been investigated. After reviewing the theory for the static case, simulations have been performed under MAS in order to identify the conditions for efficient magnetisation transfer, with applications in spectral editing or for the combination with MQMAS.
机译:从20世纪末开始,使用NMR光谱学对固态四极核进行研究的人数显着增加,并引入了获得四极相互作用的特定方法来获得 udspectra,从而导致线形变宽 udthat不能以魔术角(MAS)旋转样品来完全去除,这与固态中存在的大多数其他相互作用不同。在没有任何特殊硬件的情况下,消除这种扩展的第一种技术是多量子MQMAS实验。该方法在NMR社区中迅速流行,并发表了许多成功的应用。但是,此实验中的多量子滤波步骤严格地限制了灵敏度,从而限制了对最敏感核的应用。 ud ud将MQMAS的适用性扩展到接受度较低的核时,需要使用信号改善技术。文献中有此类方法的多个示例,但其中大多数都需要额外的优化,而对于接受度较低的原子核,这可能是耗时的,或者根本是不可能的。这项工作为MQMAS引入了一种新颖的信号改进技术,称为FAM-N。它的优化仅基于使用SIMPSON的密度矩阵模拟,这意味着不需要其他实验优化,同时可以将MQMAS频谱中的信号提高到与其他常见方法相同或更高的水平。为了证明该方法在几乎所有系统上的适用性,已经通过仿真研究了FAM-N,并使用许多模型样品以及已知难以通过NMR研究的样品进行了实验测试。 ud ud这项工作还探索了四极核NMR光谱学的其他方面。可以对卫星种群进行绝热反演,以改善静态或MAS频谱中的中心跃迁信号。测试和比较了多种方法,特别注意了双曲线割线形脉冲,对其性能进行了描述。最后,研究了自旋I = 1/2核到四极核的交叉极化。在回顾了静态情况的理论之后,已经在MAS下进行了仿真,以便确定有效磁化传递的条件,并将其应用于频谱编辑或与MQMAS结合使用。

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    Colaux Henri;

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