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首页> 外文期刊>Angewandte Chemie >Compensating Pulse Imperfections in Solid-State NMR Spectroscopy: A Key to Better Reproducibility and Performance
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Compensating Pulse Imperfections in Solid-State NMR Spectroscopy: A Key to Better Reproducibility and Performance

机译:补偿固态NMR光谱中的脉冲缺陷:更好的重现性和性能的关键

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摘要

The power and versatility of NMR spectroscopy is strongly related to the ability to manipulate NMR interactions by the application of radio-frequency (rf) pulse sequences. Unfortunately, the rf fields seen by the spins differ from the ones programmed by the experimentalist. Pulse transients, i.e., deviations of the amplitude and phase of the rf fields from the desired values, can have a severe impact on the performance of pulse sequences and can lead to inconsistent results. Here, we demonstrate how transient-compensated pulses can greatly improve the efficiency and reproducibility of NMR experiments. The implementation is based on a measurement of the characteristics of the resonance circuit and does not rely on an experimental optimization of the NMR signal. We show how the pulse sequence has to be modified to use it with transient-compensated pulses. The efficiency and reproducibility of the transient-compensated sequence is greatly superior to the original POST-C7 sequence.
机译:NMR光谱学的功能和多功能性与通过应用射频(rf)脉冲序列操纵NMR相互作用的能力密切相关。不幸的是,自旋所看到的射频场不同于实验者编程的场。脉冲瞬变,即rf场的幅度和相位与所需值的偏差,可能会对脉冲序列的性能产生严重影响,并可能导致结果不一致。在这里,我们演示了瞬态补偿脉冲如何极大地提高NMR实验的效率和可重复性。该实现是基于对谐振电路特性的测量,而不依赖于NMR信号的实验优化。我们展示了如何修改脉冲序列以将其与瞬态补偿脉冲一起使用。瞬态补偿序列的效率和可重复性大大优于原始POST-C7序列。

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