Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada N9B 3P4.
Solid State Nucl Magn Reson. 2017 Jul-Aug;84:45-58. doi: 10.1016/j.ssnmr.2016.12.008. Epub 2016 Dec 21.
Several considerations for the acquisition, processing, and analysis of high quality ultra-wideline (UW) N solid-state NMR (SSNMR) powder patterns under static conditions are discussed. It is shown that the N quadrupolar parameters may be determined accurately using the frequencies of only two discontinuities in N NMR powder patterns that are dominated by the first-order quadrupolar interaction, thereby eliminating the need for the acquisition of the entire pattern and concomitantly reducing experimental time. A framework for utilizing the WURST-CPMG pulse sequence to improve the efficiency of UW N SSNMR experiments is explored in two parts: (i) a systematic investigation of the design and parameterization of the WURST pulse is presented, and (ii) the development of the practical aspects of CPMG refocusing for the acquisition of UW N SSNMR powder patterns is discussed, with a focus on maximizing both signal-to-noise and resolution, and minimizing spectral distortions. Finally, a strategy is demonstrated that allows for the measurement of the N quadrupolar parameters for any nitrogen moiety whose quadrupolar coupling constant falls within the range 0.8≤|C|≤1.5MHz, by acquiring only two N NMR sub-spectra at strategically located transmitter frequencies; these results are compared to full powder patterns which are acquired using frequency-stepped methods. The methodologies and practical considerations outlined herein are not only useful for the rapid acquisition of UW N NMR spectra, but may also be modified and applied for UW NMR of a plethora of quadrupolar and spin-1/2 nuclides.
讨论了在静态条件下获取、处理和分析高质量超宽线(UW)N 固态 NMR(SSNMR)粉末图的几个注意事项。结果表明,可以使用仅由一阶四极相互作用主导的 N NMR 粉末图中的两个不连续性的频率准确确定 N 四极参数,从而无需获取整个图案,同时减少实验时间。在两部分中探索了利用 WURST-CPMG 脉冲序列来提高 UW N SSNMR 实验效率的框架:(i)系统地研究了 WURST 脉冲的设计和参数化,(ii)讨论了 CPMG 重聚焦的实际方面用于获取 UW N SSNMR 粉末图,重点是最大限度地提高信噪比和分辨率,并最小化光谱失真。最后,演示了一种策略,通过在战略上位于发射器频率的两个 N NMR 子谱中仅采集两个 N NMR 子谱,就可以测量任何四极耦合常数落在 0.8≤|C|≤1.5MHz 范围内的氮部分的 N 四极参数;这些结果与使用频率步进方法获得的全粉末图进行了比较。此处概述的方法和实际注意事项不仅对 UW N NMR 光谱的快速采集有用,而且还可以修改和应用于 UW 多种四极和自旋-1/2 核素的 NMR。