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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Investigation of the feasibility of amplitude-modulated dipolar decoupling in magic-angle spinning solid-state nuclear magnetic resonance
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Investigation of the feasibility of amplitude-modulated dipolar decoupling in magic-angle spinning solid-state nuclear magnetic resonance

机译:调角偶极解耦在魔角旋转固态核磁共振中的可行性研究

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摘要

The feasibility of using periodic amplitude-modulated radio-frequency (RF) irradiation under 'magic-angle spinning' for heteronuclear dipolar decoupling in solid-state nuclear magnetic resonance is addressed. The RF waveforms used are tailored to satisfy the theoretical criterion for decoupling which calls for an irradiated spin propagator which is cyclic in the sense that it equals the identity matrix irrespective of the strength and orientation of the chemical shift and dipolar coupling tensors. This requirement is met by using the Floquet formalism to provide insight into the influence of an arbitrary waveform on the dynamics of the irradiated spin-1/2 nuclei and invoking perturbation methods to design particular modulation functions which impose the required cyclicity on the propagator. Simple RF modulations which are synchronized with the sample spinning are thus derived analytically Finally, the validity of the scheme is explored in simple test experiments and the decoupling performance is compared with the traditional 'continuous-wave' method and the recently developed technique of 'two-pulse phase modulation'. [References: 23]
机译:解决了在固态核磁共振中在“魔角旋转”下使用周期性调幅射频(RF)辐射进行异核双极去耦的可行性。所使用的RF波形经过定制,以满足去耦的理论标准,该标准要求辐照的自旋传播器是循环的,从某种意义上讲,它等于单位矩阵,而与化学位移和偶极耦合张量的强度和方向无关。通过使用Floquet形式主义来满足这一要求,可以洞悉任意波形对辐照自旋1/2核的动力学的影响,并调用扰动方法来设计特殊的调制函数,从而将所需的周期性强加于传播子上。因此,通过分析得出了与样品旋转同步的简单RF调制。最后,在简单的测试实验中探索了该方案的有效性,并将解耦性能与传统的“连续波”方法和最近开发的“两个”技术进行了比较。 -脉冲相位调制”。 [参考:23]

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