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使用超极化核磁共振并通过最优跟踪对异核耦合进行缩放来进行反应监测。

Reaction monitoring using hyperpolarized NMR with scaling of heteronuclear couplings by optimal tracking.

作者信息

Zhang Guannan, Schilling Franz, Glaser Steffen J, Hilty Christian

机构信息

Chemistry Department, Texas A&M University, 3255 TAMU, College Station, TX 77843, USA.

Cancer Research UK Cambridge Institute, University of Cambridge, Li Ka Shing Centre, Cambridge CB2 0RE, United Kingdom.

出版信息

J Magn Reson. 2016 Nov;272:123-128. doi: 10.1016/j.jmr.2016.09.006. Epub 2016 Sep 14.

Abstract

Off-resonance decoupling using the method of Scaling of Heteronuclear Couplings by Optimal Tracking (SHOT) enables determination of heteronuclear correlations of chemical shifts in single scan NMR spectra. Through modulation of J-coupling evolution by shaped radio frequency pulses, off resonance decoupling using SHOT pulses causes a user-defined dependence of the observed J-splitting, such as the splitting of C peaks, on the chemical shift offset of coupled nuclei, such as H. Because a decoupling experiment requires only a single scan, this method is suitable for characterizing on-going chemical reactions using hyperpolarization by dissolution dynamic nuclear polarization (D-DNP). We demonstrate the calculation of [C, H] chemical shift correlations of the carbanionic active sites from hyperpolarized styrene polymerized using sodium naphthalene as an initiator. While off resonance decoupling by SHOT pulses does not enhance the resolution in the same way as a 2D NMR spectrum would, the ability to obtain the correlations in single scans makes this method ideal for determination of chemical shifts in on-going reactions on the second time scale. In addition, we present a novel SHOT pulse that allows to scale J-splittings 50% larger than the respective J-coupling constant. This feature can be used to enhance the resolution of the indirectly detected chemical shift and reduce peak overlap, as demonstrated in a model reaction between p-anisaldehyde and isobutylamine. For both pulses, the accuracy is evaluated under changing signal-to-noise ratios (SNR) of the peaks from reactants and reaction products, with an overall standard deviation of chemical shift differences compared to reference spectra of 0.02ppm when measured on a 400MHz NMR spectrometer. Notably, the appearance of decoupling side-bands, which scale with peak intensity, appears to be of secondary importance.

摘要

使用最优跟踪异核耦合缩放法(SHOT)进行非共振去耦能够在单扫描核磁共振谱中确定化学位移的异核相关性。通过整形射频脉冲调制J耦合演化,使用SHOT脉冲进行非共振去耦会使观察到的J分裂(如C峰的分裂)对耦合核(如H)的化学位移偏移产生用户定义的依赖性。由于去耦实验仅需单次扫描,该方法适用于通过溶解动态核极化(D-DNP)超极化来表征正在进行的化学反应。我们展示了从以萘钠为引发剂聚合的超极化苯乙烯中计算碳负离子活性位点的[C, H]化学位移相关性。虽然SHOT脉冲进行的非共振去耦不像二维核磁共振谱那样提高分辨率,但在单次扫描中获得相关性的能力使该方法成为确定时间尺度为秒级的正在进行反应中化学位移的理想选择。此外,我们提出了一种新型SHOT脉冲,它能够将J分裂缩放至比各自的J耦合常数大50%。如在对甲氧基苯甲醛与异丁胺之间的模型反应中所示,此特性可用于提高间接检测化学位移的分辨率并减少峰重叠。对于这两种脉冲,在反应物和反应产物峰的信噪比(SNR)变化的情况下评估了准确性,在400MHz核磁共振谱仪上测量时,与参考谱相比,化学位移差异的总体标准偏差为0.02ppm。值得注意的是,与峰强度成比例缩放的去耦边带的出现似乎不太重要。

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