Université de Lyon, Centre de RMN à Très Hauts Champs, CNRS/Ecole Normale Supérieure de Lyon/Université Claude Bernard Lyon 1, 5 rue de la Doua, 69100 Villeurbanne, France.
J Chem Phys. 2011 Oct 14;135(14):144201. doi: 10.1063/1.3640418.
We present a method for selectively exciting nuclear magnetic resonances (NMRs) from well-defined subsets of crystallites from a powdered sample under magic angle spinning. Magic angle spinning induces a time dependence in the anisotropic interactions, which results in a time variation of the resonance frequencies which is different for different crystallite orientations. The proposed method exploits this by applying selective pulses, which we refer to as XS (for crystallite-selective) pulses, that follow the resonance frequencies of nuclear species within particular crystallites, resulting in the induced flip angle being orientation dependent. By selecting the radiofrequency field to deliver a 180° pulse for the target orientation and employing a train of such pulses combined with cogwheel phase cycling, we obtain a high degree of orientational selectivity with the resulting spectrum containing only contributions from orientations close to the target. Typically, this leads to the selection of between 0.1% and 10% of the crystallites, and in extreme cases to the excitation of a single orientation resulting in single crystal spectra of spinning powders. Two formulations of this method are described and demonstrated with experimental examples on [1-(13)C]-alanine and the paramagnetic compound Sm(2)Sn(2)O(7).
我们提出了一种方法,用于在魔角旋转下从粉末样品中定义明确的晶畴子集中选择性激发核磁共振(NMR)。魔角旋转诱导各向异性相互作用的时间依赖性,导致不同晶畴取向的共振频率随时间变化。所提出的方法利用这一点,通过施加我们称为 XS(晶畴选择性)脉冲的选择性脉冲来实现,这些脉冲跟随特定晶畴内核种的共振频率,从而导致感应翻转角具有取向依赖性。通过选择射频场为目标取向提供 180°脉冲,并采用这种脉冲的序列和齿轮相位循环相结合,我们获得了高度的取向选择性,得到的光谱仅包含接近目标取向的贡献。通常,这会选择 0.1%到 10%的晶畴,在极端情况下,选择一个取向,从而得到旋转粉末的单晶光谱。该方法有两种配方,并通过 [1-(13)C]-丙氨酸和顺磁化合物 Sm(2)Sn(2)O(7)的实验示例进行了演示。