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Theoretical formalism and experimental verification of line shapes of NMR intermolecular multiple-quantum coherence spectra

机译:NMR分子间多量子相干谱线形的理论形式学和实验验证

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Although the theories and potential applications of intermolecular multiple-quantum coherences (iMQCs) have been under active investigations for over a decade, discussion of iMQC NMR signal formation was mainly confined in the time domain. In this paper, a full line-shape theory was developed to describe iMQC signals in the frequency domain. Relevant features of the line shape, such as peak height, linewidth, and phase, were investigated in detail. Predictions based on the theory agree well with experimental and simulated results. Since radiation-damping effects always couple with iMQCs in highly polarized liquid-state NMR systems, and strongly radiation-damped signals have many spectral characteristics similar to those of iMQCs, a detailed comparison was also made between them from different spectral aspects. With detailed comparison of peak height, linewidth, and phase, this work demonstrates that the iMQC and radiation-damping phenomena result from two completely different physical mechanisms despite that both present similar signal features and coexist in highly polarized liquid-state NMR systems. (c) 2005 American Institute of Physics.
机译:尽管分子间多量子相干(iMQC)的理论和潜在应用已进行了十多年的积极研究,但有关iMQC NMR信号形成的讨论主要局限于时域。本文提出了一种全线形理论来描述频域中的iMQC信号。详细研究了线形的相关特征,例如峰高,线宽和相位。基于该理论的预测与实验和模拟结果非常吻合。由于辐射衰减效应在高极化液态NMR系统中总是与iMQC耦合,并且强辐射衰减的信号具有许多与iMQC相似的光谱特征,因此还从不同的光谱方面对它们进行了详细的比较。通过对峰高,线宽和相位的详细比较,这项工作证明了iMQC和辐射衰减现象是由两种完全不同的物理机制导致的,尽管两者都具有相似的信号特征并且在高极化液态NMR系统中共存。 (c)2005年美国物理研究所。

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