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首页> 外文期刊>Journal of magnetic resonance >Rotor-synchronized acquisition of quadrupolar satellite-transition NMR spectra: practical aspects and double-quantum filtration
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Rotor-synchronized acquisition of quadrupolar satellite-transition NMR spectra: practical aspects and double-quantum filtration

机译:四极卫星跃迁NMR光谱的转子同步采集:实用方面和双量子滤波

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摘要

The very broad resonances of quadrupolar (spin I > 1/2) nuclei are resolved by magic angle spinning (MAS) into a large number of spinning sidebands, each of which often remains anisotropically broadened. The quadrupolar interaction can be removed to a first-order approximation if the MAS NMR spectrum is acquired in a rotor-synchronized fashion, aliasing the spinning sidebands onto a centreband and thereby increasing the signal-to-noise ratio in the resulting, possibly second-order broadened, spectrum. We discuss the practical aspects of this rotor-synchronization in the direct (t(2)) time domain, demonstrating that the audiofrequency filters in the receiver section of the spectrometer have a significant impact on the precise timings needed in the experiment. We also introduce a novel double-quantum filtered rotor-synchronized experiment for half-integer spin quadrupolar (spin I = 3/2, 5/2, etc.) nuclei that makes use of central-transition-selective inversion pulses to both excite and reconvert double-quantum coherences and yields a simplified spectrum containing only the ST1 (m(1) = +/- 1/2 <-> +/- 3/2) satellite-transition lineshapes. For spin I = 5/2 nuclei, such as O-17 and Al-27, this spectrum may exhibit a significant resolution increase over the conventional central-transition spectrum. (c) 2005 Elsevier Inc. All rights reserved.
机译:四极核(自旋I> 1/2)的非常宽的共振通过魔角旋转(MAS)分解为大量的旋转边带,每个边带通常保持各向异性加宽。如果以转子同步方式获取MAS NMR谱图,则四极相互作用可以消除为一阶近似值,从而将自旋边带混叠到中心带上,从而增加了所得的信噪比,可能是二阶的。秩序扩大了,频谱。我们在直接(t(2))时域中讨论了此转子同步的实际方面,证明了光谱仪接收器部分中的音频滤波器对实验所需的精确定时有重大影响。我们还介绍了一种新颖的针对半整数自旋四极核(自旋I = 3 / 2、5 / 2等)核的双量子滤波转子同步实验,该实验利用中心转换选择性反转脉冲来激发和激发重新转换双量子相干并产生仅包含ST1(m(1)= +/- 1/2 <-> +/- 3/2)卫星转换线形的简化频谱。对于自旋I = 5/2的原子核,例如O-17和Al-27,此光谱可能会显示出比常规中心跃迁光谱更高的分辨率。 (c)2005 Elsevier Inc.保留所有权利。

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