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首页> 外文期刊>The Journal of Chemical Physics >Broadband cross-polarization-based heteronuclear dipolar recoupling for structural and dynamic NMR studies of rigid and soft solids
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Broadband cross-polarization-based heteronuclear dipolar recoupling for structural and dynamic NMR studies of rigid and soft solids

机译:基于宽带交叉极化的异核偶极偶合,用于刚性和软固体的结构和动态NMR研究

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摘要

Dipolar recoupling is an essential part of current solid-state NMR methodology for probing atomic-resolution structure and dynamics in solids and soft matter. Recently described magic-echo amplitude-and phase-modulated cross-polarization heteronuclear recoupling strategy aims at efficient and robust recoupling in the entire range of coupling constants both in rigid and highly dynamic molecules. In the present study, the properties of this recoupling technique are investigated by theoretical analysis, spin-dynamics simulation, and experimentally. The resonance conditions and the efficiency of suppressing the rf field errors are examined and compared to those for other recoupling sequences based on similar principles. The experimental data obtained in a variety of rigid and soft solids illustrate the scope of the method and corroborate the results of analytical and numerical calculations. The technique benefits from the dipolar resolution over a wider range of coupling constants compared to that in other state-of-the-art methods and thus is advantageous in studies of complex solids with a broad range of dynamic processes and molecular mobility degrees. (C) 2016 AIP Publishing LLC.
机译:偶极耦合是当前固态NMR方法学的重要组成部分,用于探测固体和软物质中的原子分辨率结构和动力学。最近描述的魔术回波振幅和相位调制的交叉极化异核再耦合策略旨在在刚性和高动态分子的整个耦合常数范围内实现有效且鲁棒的再耦合。在本研究中,通过理论分析,自旋动力学模拟和实验研究了这种耦合技术的性质。基于相似原理,检查了共振条件和抑制rf场误差的效率,并将其与其他再耦合序列的共振条件和效率进行了比较。在各种刚性和软固体中获得的实验数据说明了该方法的范围,并证实了分析和数值计算的结果。与其他现有技术相比,该技术得益于偶极分辨率,且耦合常数范围更广,因此在研究具有宽动态过程和分子迁移率范围的复杂固体方面具有优势。 (C)2016 AIP出版有限责任公司。

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