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首页> 外文期刊>The Journal of Chemical Physics >Heteronuclear dipolar recoupling in solid-state nuclear magnetic resonance by amplitude-, phase-, and frequency-modulated Lee-Goldburg cross-polarization
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Heteronuclear dipolar recoupling in solid-state nuclear magnetic resonance by amplitude-, phase-, and frequency-modulated Lee-Goldburg cross-polarization

机译:通过振幅,相位和频率调制的Lee-Goldburg交叉极化在固态核磁共振中的异核双极耦合

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摘要

This paper presents a theoretical, numerical, and experimental study of phase- and frequency-switched Lee-Goldburg cross-polarization (FSLG-CP) under magic-angle spinning conditions. It is shown that a well-defined amplitude modulation of one of the two radio-frequency (rf) fields in the FSLG-CP sequence results in highly efficient heteronuclear dipolar recoupling. The recoupled dipolar interaction is gamma-encoded and, under ideal conditions, the effective spin Hamiltonian is equivalent to that in continuous-wave Lee-Goldburg CP. In practice, however, FSLG-CP is less susceptible to rf field mismatch and inhomogeneity, and provides better suppression of H-1 spin diffusion. The performance of FSLG-CP is experimentally demonstrated on liquid-crystalline samples exhibiting motionally averaged dipolar couplings. (C) 2005 American Institute of Physics.
机译:本文介绍了在魔角旋转条件下进行相和频率切换的Lee-Goldburg交叉极化(FSLG-CP)的理论,数值和实验研究。结果表明,对FSLG-CP序列中的两个射频(rf)场之一进行明确定义的幅度调制可实现高效的异核双极耦合。重新耦合的偶极相互作用是伽马编码的,并且在理想条件下,有效的自旋哈密顿量与连续波Lee-Goldburg CP中的等效。然而,实际上,FSLG-CP不太容易受到rf场失配和不均匀的影响,并且可以更好地抑制H-1自旋扩散。 FSLG-CP的性能已在表现出运动平均偶极耦合的液晶样品上得到了实验证明。 (C)2005美国物理研究所。

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