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在魔角旋转和双旋转条件下四极核之间的剩余偶极耦合。

Residual dipolar coupling between quadrupolar nuclei under magic-angle spinning and double-rotation conditions.

机构信息

Department of Chemistry, Centre for Catalysis Research and Innovation, University of Ottawa, 10 Marie Curie Private, Ottawa, Ontario, Canada K1N 6N5.

出版信息

J Magn Reson. 2011 Dec;213(1):82-9. doi: 10.1016/j.jmr.2011.08.043. Epub 2011 Sep 17.

Abstract

Residual dipolar couplings between spin-1/2 and quadrupolar nuclei are often observed and exploited in the magic-angle spinning (MAS) NMR spectra of spin-1/2 nuclei. These orientation-dependent splittings contain information on the dipolar interaction, which can be translated into structural information. The same type of splittings may also be observed for pairs of quadrupolar nuclei, although information is often difficult to extract from the quadrupolar-broadened lineshapes. Here, the complete theory for describing the dipolar coupling between two quadrupolar nuclei in the frequency domain by Hamiltonian diagonalization is given. The theory is developed under MAS and double-rotation (DOR) conditions, and is valid for any spin quantum numbers, quadrupolar coupling constants, asymmetry parameters, and tensor orientations at both nuclei. All terms in the dipolar Hamiltonian become partially secular and contribute to the NMR spectrum. The theory is validated using experimental 11B and 35/37Cl NMR experiments carried out on powdered B-chlorocatecholborane, where both MAS and DOR are used to help separate effects of the quadrupolar interaction from those of the dipolar interaction. It is shown that the lineshapes are sensitive to the quadrupolar coupling constant of both nuclei and to the J coupling (including its sign). From these experiments, the dipolar coupling constant for a heteronuclear spin pair of quadrupolar nuclei may be obtained as well as the sign of the quadrupolar coupling constant of the perturbing nucleus; these are two parameters that are difficult to obtain experimentally otherwise.

摘要

自旋-1/2 和四极核之间的剩余偶极耦合在自旋-1/2 核的魔角旋转(MAS)NMR 谱中经常被观察到并加以利用。这些依赖于取向的分裂包含了偶极相互作用的信息,可以转化为结构信息。对于两对四极核也可能观察到相同类型的分裂,尽管信息通常难以从四极展宽的线宽中提取。本文给出了通过哈密顿量对角化在频域中描述两个四极核之间偶极耦合的完整理论。该理论是在 MAS 和双旋转(DOR)条件下发展起来的,适用于任何自旋量子数、偶极耦合常数、各向异性参数和两个核的张量取向。偶极哈密顿量中的所有项都变得部分久期,并对 NMR 谱有贡献。该理论通过在粉末 B-氯邻苯二硼酸硼烷上进行的实验 11B 和 35/37Cl NMR 实验得到了验证,其中 MAS 和 DOR 都被用来帮助分离偶极相互作用和四极相互作用的影响。结果表明,线宽对两个核的偶极耦合常数和 J 耦合(包括其符号)敏感。通过这些实验,可以获得异核自旋对四极核的偶极耦合常数以及扰动核的四极耦合常数的符号;这些是其他方法难以获得的两个参数。

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