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C-rotational echo double resonance: Heteronuclear dipolar recoupling with homonuclear dipolar decoupling

机译:C旋转回波双共振:异核偶极耦合与同核偶极耦合

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摘要

We propose a series of heteronuclear dipolar recoupling schemes which are insensitive to the presence of homonuclear dipolar interaction. The schemes are based on the pulse symmetry CN_n~v. The optimum choices for N, n, and v were determined with the help of Average Hamiltonian Theory (AHT). The lowest-order AHT shows that the pulse symmetries with n = N and v = 1 are suitable for the recoupling of heteronuclear dipolar interactions. Together with the parabolic approximation of the dephasing curve, we develop a powerful experimental strategy to characterize the van Vleck's second moments for multiple-spin systems under conditions of very fast magic-angle spinning. These new pulse symmetries are superior to the rotational echo double resonance (REDOR) method and other recoupling schemes as far as the interference of the homonuclear dipolar interaction is concerned. Preliminary experimental results on crystalline model compounds are given to illustrate the utility of our approach.
机译:我们提出了一系列的异核偶极耦合方案,这些方案对同核偶极相互作用的存在不敏感。该方案基于脉冲对称CN_n〜v。 N,n和v的最佳选择是在平均哈密顿理论(AHT)的帮助下确定的。最低阶AHT表明,n = N和v = 1的脉冲对称性适用于异核偶极相互作用的重新耦合。结合相移曲线的抛物线近似,我们开发了一种强大的实验策略,可在非常快的幻角旋转条件下表征多旋转系统的范弗莱克第二矩。就涉及同核偶极相互作用的干扰而言,这些新的脉冲对称性优于旋转回波双共振(REDOR)方法和其他重新耦合方案。给出了晶体模型化合物的初步实验结果,以说明我们方法的实用性。

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