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Diffusion of intermolecular zero- and double-quantum coherences in two-component spin systems

机译:两组旋转系统中分子间零和双量子相干的扩散

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摘要

An NMR pulse sequence was designed to accurately measure the diffusion rates of intermolecular zero-quantum coherences (ZQCs) and double-quantum coherences (DQCs) in two-component spin systems. The Gaussian phase distribution approximation was employed to describe the behavior of intermolecular ZQCs and DQCs as they underwent unrestricted isotropic diffusion. Our experimental and theoretical results demonstrate that intermolecular ZQCs and DQCs evolve with the same diffusion rates. Uncorrelated phases between individual spins on different molecules in intermolecular ZQCs and DQCs are suggested as the cause for their unconventional diffusion behavior. The differences in diffusion rates between inter- and intramolecular ZQCs or DQCs are explained. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 30]
机译:设计了NMR脉冲序列以精确地测量分子零 - 量子相干(ZQC)和双量子相干(DQC)的分子间旋转系统的扩散速率。 高斯相分布近似用于描述分子间ZQC和DQC的行为,因为它们经历了不受限制的各向同性扩散。 我们的实验和理论结果表明,分子间ZQC和DQCS以相同的扩散速率发展。 在分子间ZQC和DQC中的不同分子上的各个旋转之间的不相关阶段被提出为它们非常规扩散行为的原因。 解释和分子内ZQCS或DQC之间的扩散速率的差异。 (c)2001年ELSELVIER Science B.v.保留所有权利。 [参考:30]

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