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通过固态 NMR 光谱中的自旋-1/2 核进行间接检测:应用于观察质子与四极核之间的近距离。

Indirect detection via spin-1/2 nuclei in solid state NMR spectroscopy: application to the observation of proximities between protons and quadrupolar nuclei.

机构信息

Unité de Catalyse et de Chimie du Solide (UCCS), UMR CNRS 8181, Ecole Nationale Supérieure de Chimie de Lille, Université de Lille 1, Batiment C7, B.P. 90108, 59652 Villeneuve d'Ascq Cedex, France.

出版信息

J Phys Chem A. 2009 Nov 19;113(46):12864-78. doi: 10.1021/jp906099k.

Abstract

We present a comprehensive comparison of through-space heteronuclear correlation techniques for solid state NMR, combining indirect detection and single-channel recoupling method. These techniques, named D-HMQC and D-HSQC, do not suffer from dipolar truncation and can be employed to correlate quadrupolar nuclei with spin-1/2 nuclei. The heteronuclear dipolar couplings are restored under magic-angle spinning by applying supercycled symmetry-based pulse sequences (SR412) or simultaneous frequency and amplitude modulation (SFAM). The average Hamiltonian theory (AHT) of these recoupling methods is developed. These results are applied to analyze the performances of D-HMQC and D-HSQC sequences. It is shown that, whatever the magnitude of spin interations, D-HMQC experiment offers larger efficiency and higher robustness than D-HSQC. Furthermore, the spectral resolution in both dimensions of proton detected two-dimensional D-HMQC and D-HSQC spectra can be enhanced by applying recently introduced symmetry-based homonuclear dipolar decoupling schemes that cause a z-rotation of the spins. This is demonstrated by 1H-13C and 1H-23Na correlation experiments on l-histidine and NaH2PO4, respectively. The two-dimensional heteronuclear 1H-23Na correlation spectrum yields the assignment of 23Na resonances of NaH2PO4. This assignment is corroborated by first-principles calculations.

摘要

我们综合比较了固态 NMR 中的通过空间异核相关技术,结合了间接检测和单通道再耦合法。这些技术分别命名为 D-HMQC 和 D-HSQC,它们不受偶极截断的影响,可以用于关联四极核与自旋-1/2 核。通过应用超循环对称脉冲序列 (SR412) 或同时频率和幅度调制 (SFAM),在魔角旋转下可以恢复异核偶极耦合。我们还发展了这些再耦合法的平均哈密顿理论 (AHT)。这些结果应用于分析 D-HMQC 和 D-HSQC 序列的性能。结果表明,无论自旋相互作用的大小如何,D-HMQC 实验都比 D-HSQC 具有更高的效率和更强的稳健性。此外,通过应用最近引入的基于对称的同核偶极去耦方案,可以提高质子探测二维 D-HMQC 和 D-HSQC 谱的两个维度的谱分辨率,这些方案会导致自旋的 z 旋转。通过分别在 l-组氨酸和 NaH2PO4 上进行 1H-13C 和 1H-23Na 相关实验证明了这一点。二维异核 1H-23Na 相关谱给出了 NaH2PO4 的 23Na 共振的归属。这一归属得到了第一性原理计算的证实。

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