首页> 外文期刊>The Journal of Chemical Physics >Refocused continuous-wave decoupling: A new approach to heteronuclear dipolar decoupling in solid-state NMR spectroscopy
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Refocused continuous-wave decoupling: A new approach to heteronuclear dipolar decoupling in solid-state NMR spectroscopy

机译:重新聚焦的连续波去耦:固态NMR光谱中异核双极去耦的新方法

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摘要

A novel strategy for heteronuclear dipolar decoupling in magic-angle spinning solid-state nuclear magnetic resonance (NMR) spectroscopy is presented, which eliminates residual static high-order terms in the effective Hamiltonian originating from interactions between oscillating dipolar and anisotropic shielding tensors. The method, called refocused continuous-wave (rCW) decoupling, is systematically established by interleaving continuous wave decoupling with appropriately inserted rotor-synchronized high-power π refocusing pulses of alternating phases. The effect of the refocusing pulses in eliminating residual effects from dipolar coupling in heteronuclear spin systems is rationalized by effective Hamiltonian calculations to third order. In some variants the π pulse refocusing is supplemented by insertion of rotor-synchronized π2 purging pulses to further reduce the residual dipolar coupling effects. Five different rCW decoupling sequences are presented and their performance is compared to state-of-the-art decoupling methods. The rCW decoupling sequences benefit from extreme broadbandedness, tolerance towards rf inhomogeneity, and improved potential for decoupling at relatively low average rf field strengths. In numerical simulations, the rCW schemes clearly reveal superior characteristics relative to the best decoupling schemes presented so far, which we to some extent also are capable of demonstrating experimentally. A major advantage of the rCW decoupling methods is that they are easy to set up and optimize experimentally.
机译:提出了一种在魔角旋转固态核磁共振(NMR)光谱中异核偶极解耦的新策略,该策略消除了有效汉密尔顿中残留的静态高阶项,该项来自振荡偶极与各向异性屏蔽张量之间的相互作用。该方法称为重聚焦连续波(rCW)解耦,是通过将连续波解耦与适当插入的交替相位的转子同步大功率π重聚焦脉冲交织在一起而系统地建立的。通过有效的三阶哈密顿量计算,合理地重新聚焦了脉冲,以消除异核自旋系统中偶极耦合产生的残留效应。在某些变型中,通过插入转子同步的π2净化脉冲来补充π脉冲重新聚焦,以进一步减小残留的偶极耦合效应。给出了五个不同的rCW解耦序列,并将它们的性能与最新的解耦方法进行了比较。 rCW去耦序列得益于极高的宽带性,对rf不均匀性的耐受性以及在相对较低的平均rf场强下提高的去耦潜力。在数值模拟中,相对于迄今为止提出的最佳解耦方案,rCW方案清楚地显示了优越的特性,我们在某种程度上也能够通过实验证明。 rCW去耦方法的主要优点是易于设置和实验优化。

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