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High-Resolution Proton CRAMPS NMR Using Narrowband Analog Filters and Postponed Data Acquisition

机译:使用窄带模拟滤波器和延迟数据采集的高分辨率质子CRAMPS NMR

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摘要

Proton linewidths decrease with increasing magic-angle spinning (MAS) rates. However, without spin dilution by deuteration, even with the fastest MAS rates available today, the narrowest proton linewidths are obtained by using the combined rotation and multiple pulse spectroscopy (CRAMPS) method. Direct observation under windowed CRAMPS typically introduces several tens of times more noise, partly because wideband analog filters (e.g. 5 MHz) must be used or sometimes even bypassed. Here we report that it is possible to keep using narrowband analog filters (about 50 kHz cutoff frequency) in CRAMPS by taking advantage of the time delay caused by the filters, which is inversely proportional to the cutoff frequency. This delay coincides with typical CRAMPS cycle times, enabling acquisition of the data point in the next detection window. The noise of such CRAMPS spectra is only about 5 times larger than MAS-only spectra. This new method allows CRAMPS to be performed on systems that lack wideline hardware (wideband filters and fast ADCs), for example, older spectrometers originally intended for solution NMR.
机译:质子线宽随魔术角旋转(MAS)速率的增加而减小。然而,即使没有使用氘化的自旋稀释,即使使用当今可用的最快的MAS速率,也可以通过使用组合旋转和多脉冲光谱(CRAMPS)方法获得最窄的质子线宽。在窗口式CRAMPS下进行直接观察通常会引入数十倍的噪声,部分原因是必须使用宽带模拟滤波器(例如5 MHz),有时甚至要绕开它。我们在这里报告说,可以利用CRAMPS中的窄带模拟滤波器(截止频率约为50 kHz),利用滤波器​​引起的时间延迟,该延迟与截止频率成反比。此延迟与典型的CRAMPS周期时间一致,从而可以在下一个检测窗口中获取数据点。这种CRAMPS频谱的噪声仅比仅MAS频谱大5倍。这种新方法允许在缺乏宽带硬件(宽带滤波器和快速ADC)的系统上执行CRAMPS,例如,最初用于溶液NMR的较旧光谱仪。

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