Brouwer Darren H, Alavi Saman, Ripmeester John A
Steacie Institute for Molecular Sciences, National Research Council, 100 Sussex Drive, Ottawa ON, Canada K1A 0R6.
Phys Chem Chem Phys. 2007 Mar 7;9(9):1093-8. doi: 10.1039/b616434j. Epub 2007 Jan 18.
A method is presented for detecting multiple xenon atoms in cavities of solid-state inclusion compounds using (129)Xe double quantum NMR spectroscopy. Double quantum filtered (129)Xe NMR spectra, performed on the xenon clathrate of Dianin's compound were obtained under high-resolution Magic-Angle Spinning (MAS) conditions, by recoupling the weak (129)Xe-(129)Xe dipole-dipole couplings that exist between xenon atoms in close spatial proximity. Because the (129)Xe-(129)Xe dipole-dipole couplings are generally weak due to dynamics of the atoms and to large internuclear separations, and since the (129)Xe Chemical Shift Anisotropy (CSA) tends to be relatively large, a very robust dipolar recoupling sequence was necessary, with the symmetry-based SR26 dipolar recoupling sequence proving appropriate. We have also attempted to measure the (129)Xe-(129)Xe dipole-dipole coupling constant between xenon atoms in the cavities of the xenon-Dianin's compound clathrate and have found that the dynamics of the xenon atoms (as investigated with molecular dynamics simulations) as well as (129)Xe multiple spin effects complicate the analysis. The double quantum NMR method is useful for peak assignment in (129)Xe NMR spectra because peaks arising from different types of absorption/inclusion sites or from different levels of occupancy of single sites can be distinguished. The method can also help resolve ambiguities in diffraction experiments concerning the order/disorder in a material.
本文提出了一种利用(129)Xe双量子核磁共振光谱检测固态包合物空腔中多个氙原子的方法。在高分辨率魔角旋转(MAS)条件下,通过重新耦合紧密空间相邻的氙原子之间存在的微弱(129)Xe-(129)Xe偶极-偶极耦合,获得了对Dianin化合物的氙包合物进行的双量子滤波(129)Xe NMR光谱。由于原子动力学和较大的核间距,(129)Xe-(129)Xe偶极-偶极耦合通常较弱,并且由于(129)Xe化学位移各向异性(CSA)往往相对较大,因此需要一个非常稳健的偶极重新耦合序列,基于对称性的SR26偶极重新耦合序列被证明是合适的。我们还试图测量氙-Dianin化合物包合物空腔中氙原子之间的(129)Xe-(129)Xe偶极-偶极耦合常数,发现氙原子的动力学(通过分子动力学模拟研究)以及(129)Xe多自旋效应使分析变得复杂。双量子NMR方法对于(129)Xe NMR光谱中的峰归属很有用,因为可以区分来自不同类型吸收/包合位点或来自单一位点不同占据水平的峰。该方法还可以帮助解决关于材料中有序/无序的衍射实验中的模糊性。