Department of Chemistry, The University of Western Ontario, London, Ontario, N6A 5B7 Canada.
Chemistry. 2012 Sep 24;18(39):12251-9. doi: 10.1002/chem.201201563. Epub 2012 Sep 3.
Metal-organic frameworks (MOFs) are an extremely important class of porous materials with many applications. The metal centers in many important MOFs are zinc cations. However, their Zn environments have not been characterized directly by (67)Zn solid-state NMR (SSNMR) spectroscopy. This is because (67)Zn (I=5/2) is unreceptive with many unfavorable NMR characteristics, leading to very low sensitivity. In this work, we report, for the first time, a (67)Zn natural abundance SSNMR spectroscopic study of several representative zeolitic imidazolate frameworks (ZIFs) and MOFs at an ultrahigh magnetic field of 21.1 T. Our work demonstrates that (67)Zn magic-angle spinning (MAS) NMR spectra are highly sensitive to the local Zn environment and can differentiate non-equivalent Zn sites. The (67)Zn NMR parameters can be predicted by theoretical calculations. Through the study of MOF-5 desolvation, we show that with the aid of computational modeling, (67)Zn NMR spectroscopy can provide valuable structural information on the MOF systems with structures that are not well described. Using ZIF-8 as an example, we further demonstrate that (67)Zn NMR spectroscopy is highly sensitive to the guest molecules present inside the cavities. Our work also shows that a combination of (67)Zn NMR data and molecular dynamics simulation can reveal detailed information on the distribution and the dynamics of the guest species. The present work establishes (67)Zn SSNMR spectroscopy as a new tool complementary to X-ray diffraction for solving outstanding structural problems and for determining the structures of many new MOFs yet to come.
金属有机骨架(MOFs)是一类具有多种应用的非常重要的多孔材料。许多重要 MOFs 中的金属中心是锌阳离子。然而,它们的 Zn 环境尚未通过(67)Zn 固态 NMR(SSNMR)光谱直接表征。这是因为(67)Zn(I=5/2)不接受许多不利的 NMR 特性,导致灵敏度非常低。在这项工作中,我们首次在 21.1 T 的超高磁场下报告了几种代表性沸石咪唑酯骨架(ZIFs)和 MOFs 的(67)Zn 天然丰度 SSNMR 光谱研究。我们的工作表明,(67)Zn 魔角旋转(MAS)NMR 谱对局部 Zn 环境高度敏感,并可区分不等价的 Zn 位。(67)Zn NMR 参数可以通过理论计算进行预测。通过 MOF-5 脱溶的研究,我们表明,借助计算建模,(67)Zn NMR 光谱可以为结构未得到很好描述的 MOF 系统提供有价值的结构信息。以 ZIF-8 为例,我们进一步证明(67)Zn NMR 光谱对空腔内存在的客体分子高度敏感。我们的工作还表明,(67)Zn NMR 数据和分子动力学模拟的结合可以揭示客体物种的分布和动力学的详细信息。本工作确立了(67)Zn SSNMR 光谱作为一种与 X 射线衍射互补的新工具,用于解决突出的结构问题,并确定许多尚未出现的新 MOF 的结构。