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首页> 外文期刊>Journal of magnetic resonance >Recoupled separated-local-field experiments and applications to study intermediate-regime molecular motions
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Recoupled separated-local-field experiments and applications to study intermediate-regime molecular motions

机译:重新耦合的局部场实验及其在研究中间区域分子运动中的应用

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摘要

A specific separated-local-field NMR experiment, dubbed Dipolar-Chemical-Shift Correlation (DIPSHIFT) is frequently used to study molecular motions by probing reorientations through the changes in XH dipolar coupling and ~(T2). In systems where the coupling is weak or the reorientation angle is small, a recoupled variant of the DIPSHIFT experiment is applied, where the effective dipolar coupling is amplified by a REDOR-like π-pulse train. However, a previously described constant-time variant of this experiment is not sensitive to the motion-induced ~(T2) effect, which precludes the observation of motions over a large range of rates ranging from hundreds of Hz to around a MHz. We present a DIPSHIFT implementation which amplifies the dipolar couplings and is still sensitive to ~(T2) effects. Spin dynamics simulations, analytical calculations and experiments demonstrate the sensitivity of the technique to molecular motions, and suggest the best experimental conditions to avoid imperfections. Furthermore, an in-depth theoretical analysis of the interplay of REDOR-like recoupling and proton decoupling based on Average-Hamiltonian Theory was performed, which allowed explaining the origin of many artifacts found in literature data.
机译:一种称为“偶极化学位移相关性”(DIPSHIFT)的特定分离局部场NMR实验通常用于通过XH偶极耦合和〜(T2)的变化来探测重新取向,从而研究分子运动。在耦合较弱或重新定向角度较小的系统中,将应用DIPSHIFT实验的重新耦合变体,其中有效的偶极耦合会通过类似REDOR的π脉冲序列进行放大。但是,此实验的先前描述的恒定时间变体对运动引起的〜(T2)效应不敏感,从而无法观察到从数百Hz到MHz左右的较大速率范围内的运动。我们提出了一种DIPSHIFT实现,该实现可放大偶极耦合并且仍然对〜(T2)效应敏感。自旋动力学模拟,分析计算和实验证明了该技术对分子运动的敏感性,并提出了避免缺陷的最佳实验条件。此外,对基于平均哈密顿理论的REDOR类重耦合与质子解耦之间的相互作用进行了深入的理论分析,这可以解释文献数据中发现的许多伪像的起源。

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