首页> 外文期刊>The Journal of Chemical Physics >RELATIVE ORIENTATION OF CHEMICAL SHIELDING AND DIPOLAR COUPLING TENSORS - MIXED SINGLE- AND DOUBLE-QUANTUM HOMONUCLEAR ROTARY RESONANCE NUCLEAR MAGNETIC RESONANCE OF ROTATING SOLIDS
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RELATIVE ORIENTATION OF CHEMICAL SHIELDING AND DIPOLAR COUPLING TENSORS - MIXED SINGLE- AND DOUBLE-QUANTUM HOMONUCLEAR ROTARY RESONANCE NUCLEAR MAGNETIC RESONANCE OF ROTATING SOLIDS

机译:化学屏蔽和双极耦合张量的相对方向-旋转固体混合的单-和双量子全核旋转共振核磁共振

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摘要

A novel two-dimensional magic-angle spinning nuclear magnetic resonance (NMR) method for determination of relative orientation of dipolar and chemical shielding tensors for dipolar-coupled homonuclear spin-1/2-pairs of powder samples is described. Simultaneous recoupling of anisotropic chemical shielding and dipolar coupling interactions is accomplished using a homonuclear rotary resonance pulse sequence with the amplitude omega(rf) of a rf irradiation field matched to the spinning frequency omega(r) according to omega(rf)=omega(r). Employing this technique in the first dimension of a two-dimensional experiment leads to powder spectra exhibiting strong dependence on the magnitudes and the relative orientation of the two shielding tensors and the dipolar coupling tensor correlated to a high-resolution spectrum in the sampling dimension. Various aspects of the recoupling experiment are described theoretically and the applicability of the method for determination of relative orientation of these three anisotropic tensors through numerical simulation is demonstrated on basis of experiments for a doubly C-13-labeled powder of L-alanine. With reference to this sample (and aminoacids in general), minor effects from simultaneous recoupling of the heteronuclear dipolar coupling between C-alpha and the amide N-14 nucleus are evaluated. In the present case, the C-13-N-14 dipolar interaction is used in numerical simulations to refine our structural analysis and to obtain information about the absolute orientation of the C-13 chemical shielding tensors relative to the molecular coordinate system. (C) 1997 American Institute of Physics. [References: 67]
机译:描述了一种新型的二维魔角旋转核磁共振(NMR)方法,用于确定粉末样品的偶极耦合同核自旋1/2对的偶极和化学屏蔽张量的相对方向。各向异性化学屏蔽和偶极耦合相互作用的同时再耦合是通过使用同核旋转共振脉冲序列完成的,其中rf辐照场的振幅omega(rf)与旋转频率omega(r)匹配,根据omega(rf)= omega(r )。在二维实验的第一维中使用此技术会导致粉末光谱显示出对两个屏蔽张量的大小和相对方向的强烈依赖性,而偶极耦合张量与采样尺寸中的高分辨率光谱相关。从理论上描述了耦合实验的各个方面,并通过对C-13标记的L-丙氨酸双粉进行了实验,证明了通过数值模拟确定这三个各向异性张量的相对取向的方法的适用性。参考该样品(和一般的氨基酸),评估了C-alpha和酰胺N-14核之间异核偶极偶合的同时重新偶合的较小影响。在当前情况下,C-13-N-14偶极相互作用用于数值模拟中,以改进我们的结构分析并获得有关C-13化学屏蔽张量相对于分子坐标系的绝对方向的信息。 (C)1997美国物理研究所。 [参考:67]

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