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优化激发脉冲以获取半整数 quadrupolar 核的静态 NMR 粉末图谱。

Optimized excitation pulses for the acquisition of static NMR powder patterns from half-integer quadrupolar nuclei.

机构信息

Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ont, Canada.

出版信息

J Magn Reson. 2010 Mar;203(1):156-66. doi: 10.1016/j.jmr.2009.12.016. Epub 2009 Dec 23.

DOI:10.1016/j.jmr.2009.12.016
PMID:20060763
Abstract

Various amplitude- and phase-modulated excitation pulses for the observation of static NMR powder patterns from half-integer quadrupolar nuclei have been generated using the optimal control routines implemented in SIMPSON 2.0. Such pulses are capable of both excitation of the central transition and signal enhancement by population transfer from the satellites. Enhancements in excess of 100% have been achieved for the central transition of the spin-3/2 (87)Rb nucleus compared with a selective pi/2 pulse. These pulses are shown to be relatively insensitive to changes in RF power and transmitter offsets, and can achieve a more uniform signal enhancement than double-frequency sweeps (DFS), resulting in more accurate spectral lineshapes. We also investigate the possibility of "calibration-free" optimized pulses for general use on half-integer quadrupoles with unknown interaction parameters. Such pulses could prove extremely useful for studying low abundance or insensitive nuclei for which experimental optimization of the DFS scheme may be difficult. We demonstrate that a pulse optimized for an arbitrary spin-3/2 system can function well on multiple samples, and can also excite the central transition of higher spin numbers, albeit with a smaller enhancement. The mechanism by which these optimized pulses achieve the signal enhancement is highly complex and, unlike DFS, involves a non-linear excitation of the satellite transition manifold, as well as the generation and manipulation of significant multiple-quantum coherences.

摘要

已使用 SIMPSON 2.0 中实现的最佳控制例程生成了用于观察来自半整数 quadrupolar 核的静态 NMR 粉末图的各种幅度和相位调制激发脉冲。这些脉冲既能激发中央跃迁,又能通过来自卫星的群体转移来增强信号。与选择性 pi/2 脉冲相比,自旋-3/2(87)Rb 核的中央跃迁的增强超过 100%。这些脉冲被证明对 RF 功率和发射器偏移的变化相对不敏感,并且可以实现比双频扫描(DFS)更均匀的信号增强,从而产生更准确的光谱线形状。我们还研究了针对具有未知相互作用参数的半整数 quadrupole 的“无校准”优化脉冲的可能性。对于研究丰度低或不敏感的核,这种脉冲可能非常有用,因为实验优化 DFS 方案可能很困难。我们证明,针对任意自旋-3/2 系统优化的脉冲可以在多个样品上很好地工作,并且还可以激发更高自旋数的中央跃迁,尽管增强幅度较小。这些优化脉冲实现信号增强的机制非常复杂,与 DFS 不同,它涉及到卫星跃迁态的非线性激发,以及大量量子相干的产生和操纵。

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