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魔角旋转固态核磁共振中 J 耦合作用下自旋回波调制的原理

Principles of spin-echo modulation by J-couplings in magic-angle-spinning solid-state NMR.

作者信息

Duma Luminita, Lai Wai Cheu, Carravetta Marina, Emsley Lyndon, Brown Steven P, Levitt Malcolm H

机构信息

Chemistry Department, Southampton University, SO17 1BJ, UK.

出版信息

Chemphyschem. 2004 Jun 21;5(6):815-33. doi: 10.1002/cphc.200301213.

Abstract

In magic-angle-spinning solid-state NMR, the homonuclear J-couplings between pairs of spin-1/2 nuclei may be determined by studying the modulation of the spin echo induced by a pi-pulse, as a function of the echo duration. We present the theory of J-induced spin-echo modulation in magic-angle-spinning solids, and derive a set of modulation regimes which apply under different experimental conditions. In most cases, the dominant spin-echo modulation frequency is exactly equal to the J-coupling. Somewhat surprisingly, the chemical shift anisotropies and dipole-dipole couplings tend to stabilise--rather than abscure--the J-modulation. The theoretical conclusions are supported by numerical simulations and experimental results obtained for three representative samples containing 13C spin pairs.

摘要

在魔角旋转固态核磁共振中,自旋为1/2的核自旋对之间的同核J耦合可以通过研究π脉冲诱导的自旋回波调制来确定,该调制是回波持续时间的函数。我们提出了魔角旋转固体中J诱导自旋回波调制的理论,并推导了在不同实验条件下适用的一组调制机制。在大多数情况下,主导的自旋回波调制频率恰好等于J耦合。有点令人惊讶的是,化学位移各向异性和偶极-偶极耦合倾向于稳定——而不是模糊——J调制。理论结论得到了对三个含有13C自旋对的代表性样品进行的数值模拟和实验结果的支持。

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