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快速MAS极限下用于固态(1)H-(13)C异核相关的重新耦合极化转移方法。

Recoupled polarization-transfer methods for solid-state (1)H--(13)C heteronuclear correlation in the limit of fast MAS.

作者信息

Saalwächter K, Graf R, Spiess H W

机构信息

Max-Planck-Institute for Polymer Research, D-55021 Mainz, Germany.

出版信息

J Magn Reson. 2001 Feb;148(2):398-418. doi: 10.1006/jmre.2000.2259.

DOI:10.1006/jmre.2000.2259
PMID:11237647
Abstract

An in-depth account of the effects of homonuclear couplings and multiple heteronuclear couplings is given for a recently published technique for (1)H--(13)C dipolar correlation in solids under very fast MAS, where the heteronuclear dipolar coupling is recoupled by means of REDOR pi-pulse trains. The method bears similarities to well-known solution-state NMR techniques, which form the framework of a heteronuclear multiple-quantum experiment. The so-called recoupled polarization-transfer (REPT) technique is versatile in that rotor-synchronized (1)H--(13)C shift correlation spectra can be recorded. In addition, weak heteronuclear dipolar coupling constants can be extracted by means of spinning sideband analysis in the indirect dimension of the experiment. These sidebands are generated by rotor encoding of the reconversion Hamiltonian. We present generalized variants of the initially described heteronuclear multiple-quantum correlation (HMQC) experiment, which are better suited for certain applications. Using these techniques, measurements on model compounds with (13)C in natural abundance, as well as simulations, confirm the very weak effect of (1)H--(1)H homonuclear couplings on the spectra recorded with spinning frequencies of 25--30 kHz. The effect of remote heteronuclear couplings on the spinning-sideband patterns of CH(n) groups is discussed, and (13)C spectral editing of rigid organic solids is shown to be practicable with these techniques.

摘要

针对最近发表的一种在极快速MAS条件下用于固体中(1)H - (13)C偶极相关的技术,深入阐述了同核耦合和多重异核耦合的影响。在该技术中,异核偶极耦合通过REDOR π脉冲序列进行重新耦合。该方法与知名的溶液态NMR技术有相似之处,这些技术构成了异核多量子实验的框架。所谓的重新耦合极化转移(REPT)技术具有通用性,因为可以记录转子同步的(1)H - (13)C位移相关谱。此外,通过在实验的间接维度中进行旋转边带分析,可以提取弱的异核偶极耦合常数。这些边带是由再转换哈密顿量的转子编码产生的。我们提出了最初描述的异核多量子相关(HMQC)实验的广义变体,它们更适合某些应用。使用这些技术,对天然丰度含有(13)C的模型化合物进行测量以及模拟,证实了在25 - 30 kHz的旋转频率下记录的谱中(1)H - (1)H同核耦合的影响非常微弱。讨论了远程异核耦合对CH(n)基团旋转边带模式的影响,并表明使用这些技术对刚性有机固体进行(13)C谱编辑是可行的。

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引用本文的文献

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Compensated second-order recoupling: application to third spin assisted recoupling.补偿的二阶重耦:在第三自旋辅助重耦中的应用。
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