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Measuring strong one-bond dipolar couplings using REDOR in magic-angle spinning solid-state NMR

机译:使用魔法角旋转固态NMR中的REDOR测量强的一键双极联轴器

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摘要

Rotational-Echo DOuble Resonance, REDOR, is an experimentally robust and a well-established dipolar-recoupling technique to measure dipolar couplings between isolated pairs of spin-1/2 heteronuclei in solid-state nuclear magnetic resonance. REDOR can also be used to estimate motional order parameters when the bond distance is known, for example, in the case of directly bound nuclei. However, the relatively fast dipolar dephasing for strongly coupled spin-1/2 pairs, such as C-13-H-1, makes the stroboscopic measurement required in this experiment challenging, even at fast Magic-Angle-Spinning (MAS) frequencies. In such cases, modified REDOR-based methods like Shifted-REDOR (S-REDOR) are used to scale the dipolar coupling compared to REDOR. This is achieved by changing the position of one of the two recoupling pi-pulses in a rotor period. This feature, however, comes at the cost of mixing multiple Fourier components of the dipolar coupling and can, additionally, require high radio-frequency amplitudes to realise small scaling factors. We introduce here a general pulse scheme which involves shifting both the pi pulses in the REDOR scheme to achieve arbitrary scaling factors whilst retaining the robustness and simplicity of REDOR recoupling and avoiding the disadvantages of S-REDOR. The classical REDOR is a specific case of this scheme with a scaling factor of one. We demonstrate the results on isolated C-13-N-15 and H-1-C-13 spin pairs at 20 and 62.5 kHz MAS, respectively. Published under license by AIP Publishing.
机译:旋转回波双共振,REDOR是一种实验稳健和良好的偶极重跳技术,用于测量固态核磁共振中的分离的旋转1/2杂核核心之间的偶极联轴器。当键合距离是已知的,例如,在直接结合的核的情况下,REDOR也可用于估计运动令参数。然而,对于强烈耦合的旋转-1 / 2对(例如C-13-H-1)的相对快速的双极脱位使得在该实验中所需的频闪测量即使在快速魔法角旋转(MAS)频率上也是如此。在这种情况下,与REDOR相比,使用改进的基于REDOR(S-REDOR)等基于redor(S-REDOR)的方法来缩放Dipolar耦合。这是通过改变转子时段中的两个循环Pi脉冲之一的位置来实现的。然而,该特征以混合二极管耦合的多个傅里叶组件的成本,并且另外,可以需要高射频幅度来实现小的缩放因子。我们在这里介绍一种概括的脉冲方案,该方案涉及转换REDOR方案中的PI脉冲,以实现任意缩放因子,同时保留REDOR的鲁棒性和简单性,并避免S-REDOR的缺点。经典redor是该方案的具体情况,具有一个缩放因子。我们分别证明了20和62.5kHz MAS分离的C-13-N-15和H-1-C-13旋转对的结果。通过AIP发布在许可证下发布。

著录项

  • 来源
    《The Journal of Chemical Physics》 |2019年第13期|共10页
  • 作者单位

    Tata Inst Fundamental Res TIFR Ctr Interdisciplinary Sci Sy 36-P Hyderabad 500107 Telangana India;

    Tata Inst Fundamental Res TIFR Ctr Interdisciplinary Sci Sy 36-P Hyderabad 500107 Telangana India;

    Swiss Fed Inst Technol Phys Chem Vladimir Prelog Weg 2 CH-8093 Zurich Switzerland;

    Tata Inst Fundamental Res TIFR Ctr Interdisciplinary Sci Sy 36-P Hyderabad 500107 Telangana India;

    Swiss Fed Inst Technol Phys Chem Vladimir Prelog Weg 2 CH-8093 Zurich Switzerland;

    Tata Inst Fundamental Res TIFR Ctr Interdisciplinary Sci Sy 36-P Hyderabad 500107 Telangana India;

    Tata Inst Fundamental Res TIFR Ctr Interdisciplinary Sci Sy 36-P Hyderabad 500107 Telangana India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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