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Observation and characterization of intermolecular homonuclear single-quantum coherences in liquid nuclear magnetic resonance

机译:液体核磁共振中分子间同核单量子相干的观察与表征

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Intermolecular zero-quantum and double-quantum coherences (iZQCs and iDQCs) are frequently discussed in literature since they may provide novel contrast mechanisms in magnetic resonance imaging and possibilities for high-resolution spectra in an inhomogeneous and unstable magnetic field. In a previous paper [J. Chem. Phys. 115, 10769 (2001)], we have studied both theoretically and experimentally the properties of iZQC and iDQC nuclear magnetic resonance (NMR) signals related to intermolecular dipolar interactions in two-component systems. In this paper, the investigation is extended to homonuclear intermolecular single-quantum coherences (iSQCs) from the second-order spin interactions, which have not been observed and studied previously. Selective excitation was used to suppress the strong conventional single-spin single-quantum signals. A combination of dipolar field treatment and Torrey equation was used to derive a general theoretical expression for the time evolution of spins with arbitrary flip angles of rf pulses. The expression was used to predict the optimal conditions for iSQCs among highly polarized spins in liquid. Dependence of the iSQC signals on the experimental parameters was measured and analyzed to verify the theoretical predictions. For the first time, signals from pure homonuclear two-spin iSQCs free of much larger conventional single-spin single-quantum signals, and intermolecular iSQC cross peaks in homonuclear pulsed-field gradient COSY experiments were observed and characterized, in one- and two-dimensional (1D and 2D) experiments, respectively. The use of coherence-selection gradients tilted at the magic angle results in the suppression of iSQC cross peaks. It provides strong evidence that the observed signals originate from distant dipolar interactions. Relaxation and diffusion properties of iSQCs in multiple-component samples were characterized and analyzed as well as the optimal rf flip angles. Theoretical and experimental results presented herein demonstrate that the signals from the homonuclear second-order iSQCs not only have a similar signal intensity as iZQCs or iDQCs, all of which are much stronger than that from three-spin iSQCs reported previously, but also provide spatial information related to dipolar correlation scales similar to iZQCs and iDQCs, which is not present in conventional SQC experiments. All 1D and 2D NMR experimental observations based on single- and multiple-component samples are in excellent agreement with the theoretical predictions. The quantitative study of iSQCs provides a better understanding of their unique mechanisms, and may find useful applications in NMR analyses such as sample purification and/or preparation of metabolites, biofluids, and natural compounds dissolved in nondeuterated solvents. (C) 2002 American Institute of Physics. [References: 49]
机译:分子间零量子和双量子相干性(iZQC和iDQC)在文献中经常讨论,因为它们可能会在磁共振成像中提供新颖的对比机制,并可能在不均匀且不稳定的磁场中提供高分辨率光谱。在上一篇论文中[J.化学物理115,10769(2001)],我们在理论和实验上都研究了iZQC和iDQC核磁共振(NMR)信号与两组分系统中分子间偶极相互作用有关的特性。在本文中,研究扩展到来自二阶自旋相互作用的同核分子间单量子相干(iSQCs),以前尚未进行观察和研究。选择性激励被用来抑制强常规单旋转单量子信号。使用偶极场处理和Torrey方程相结合,得出具有任意rf脉冲翻转角的自旋的时间演化的一般理论表达式。该表达式用于预测液体中高度极化的自旋中iSQC的最佳条件。测量并分析了iSQC信号对实验参数的依赖性,以验证理论预测。第一次,在同一个脉冲场梯度COZY实验中观察并表征了来自纯同核双自旋iSQC的信号,这些信号没有更大的常规单自旋单量子信号,并且在同核脉冲场梯度COZY实验中观察到了分子间iSQC交叉峰。尺寸(一维和二维)实验。使用以魔术角倾斜的相干选择梯度可抑制iSQC交叉峰。它提供了有力的证据,表明观察到的信号源自遥远的偶极相互作用。表征和分析了iSQC在多组分样品中的弛豫和扩散特性,以及最佳的rf翻转角。本文提供的理论和实验结果表明,来自同核二阶iSQC的信号不仅具有与iZQC或iDQC相似的信号强度,所有这些信号强度都比先前报道的三旋iSQC强大得多,而且还提供了空间信息与偶极相关量表相关,类似于iZQC和iDQC,这在常规SQC实验中不存在。基于单组分和多组分样品的所有1D和2D NMR实验观察都与理论预测非常吻合。 iSQC的定量研究可更好地了解其独特机理,并可能在NMR分析中找到有用的应用,例如样品纯化和/或代谢产物,生物流体和溶于非氘代溶剂的天然化合物的制备。 (C)2002美国物理研究所。 [参考:49]

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