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Unexpected effects of third-order cross-terms in heteronuclear spin systems under simultaneous radio-frequency irradiation and magic-angle spinning NMR.

机译:同时射频辐射和魔角旋转核磁共振在异核自旋系统中的三阶交叉项的意外影响。

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摘要

We recently noted [R. K. Harris, P. Hodgkinson, V. Zorin, J.-N. Dumez, B. Elena, L. Emsley, E. Salager, and R. Stein, Magn. Reson. Chem. 48, S103 (2010)10.1002/mrc.2636] anomalous shifts in apparent 1H chemical shifts in experiments using 1H homonuclear decoupling sequences to acquire high-resolution 1H NMR spectra for organic solids under magic-angle spinning (MAS). Analogous effects were also observed in numerical simulations of model 13C,1H spin systems under homonuclear decoupling and involving large 13C,1H dipolar couplings. While the heteronuclear coupling is generally assumed to be efficiently suppressed by sample spinning at the magic angle, we show that under conditions typically used in solid-state NMR, there is a significant third-order cross-term from this coupling under the conditions of simultaneous MAS and homonuclear decoupling for spins directly bonded to 1H. This term, which is of the order of 100 Hz under typical conditions, explains the anomalous behaviour observed on both 1H and 13C spins, including the fast dephasing observed in 13C{1H} heteronuclear spin-echo experiments under 1H homonuclear decoupling. Strategies for minimising the impact of this effect are also discussed.
机译:我们最近注意到[R.哈里斯(K. Harris),霍奇金森(P.Hodgkinson),佐林(V. Dumez,B.Elena,L.Emsley,E.Salager和R.Stein,Magn。雷森化学48,S103(2010)10.1002 / mrc.2636]使用1H同核解偶联序列在魔角旋转(MAS)下获得有机固体的高分辨率1H NMR光谱的实验中,表观1H化学位移出现异常变化。在13C,1H模型自旋系统在同核去耦作用下并涉及13C,1H大偶极耦合的数值模拟中也观察到了类似的影响。虽然通常认为异核偶联可通过以魔角旋转样品来有效抑制,但我们表明,在固态NMR中通常使用的条件下,在同时条件下该偶联存在重要的三阶交叉项直接结合到1H的自旋的MAS和同核去耦。该术语在典型条件下约为100 Hz,解释了在1H和13C自旋中观察到的异常行为,包括在1H同核去耦下在13C {1H}异核自旋回波实验中观察到的快速相移。还讨论了使这种影响最小化的策略。

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