Institute of Physical Chemistry, WWU Münster, Corrensstrasse 28/30, 48149 Münster, Germany.
Solid State Nucl Magn Reson. 2012 Apr;42:17-25. doi: 10.1016/j.ssnmr.2011.09.002. Epub 2011 Sep 24.
Local environments and lithium ion dynamics in the binary lithium silicide Li(12)Si(7), and the analogous germanium compound have been characterized by detailed (6)Li, (7)Li, and (29)Si variable temperature static and magic-angle spinning (MAS) NMR experiments. In the MAS-NMR spectra, individual lithium sites are generally well-resolved at temperatures below 200K, whereas at higher temperatures partial site averaging is observed on the kHz timescale. The observed lithium chemical shift ranges of up to 60 ppm indicate a significant amount of electronic charge stored on the lithium species, consistent with the expectation of the extended Zintl-Klemm-Bussmann concept used for the theoretical description of lithium silicides. Furthermore the strongly diamagnetic chemical shifts observed for the lithium ions situated directly above the five-membered Si(5) rings suggest the possibility of aromatic ring currents in these structural elements. This assignment is confirmed further by (29)Si{(7)Li} CPMAS-heteronuclear correlation experiments. The (29)Si MAS-NMR spectra of Li(12)Si(7), aided by 2-D J-resolved spectroscopy, are well suited for differentiating between the individual sites within the silicon framework, while further detailed connectivity information is available on the basis of 2-D INADEQUATE and radio frequency driven recoupling (RFDR) spectra. Variable temperature static (7)Li NMR spectra reveal the onset of strong motional narrowing effects, illustrating high lithium ionic mobilities in both of these compounds.
通过详细的 (6)Li、(7)Li 和 (29)Si 变温静态和魔角旋转 (MAS) NMR 实验,研究了二元锂硅化物 Li(12)Si(7)和类似的锗化合物中的局部环境和锂离子动力学。在 MAS-NMR 谱中,低于 200K 时,通常可以很好地区分各个锂位,而在较高温度下,在 kHz 时间尺度上观察到部分位平均化。观察到的锂化学位移范围高达 60 ppm,表明锂物种上存储了大量的电子电荷,这与用于锂硅化物理论描述的扩展 Zintl-Klemm-Bussmann 概念的预期一致。此外,位于五元 Si(5)环正上方的锂离子的强抗磁性化学位移表明这些结构元素中可能存在芳香环电流。这一分配通过 (29)Si{(7)Li} CPMAS 异核相关实验得到进一步证实。Li(12)Si(7)的 (29)Si MAS-NMR 谱,借助二维 J 分辨光谱,非常适合区分硅骨架中的各个位,而基于二维 INADEQUATE 和射频驱动重聚 (RFDR) 谱可以获得进一步的详细连接信息。变温静态 (7)Li NMR 光谱揭示了强运动变窄效应的出现,说明了这两种化合物中锂离子的高离子迁移率。