Inorganic Chemistry III, University of Bayreuth , Universitätsstraße 30, 95447 Bayreuth, Germany.
Institute of Chemistry, Theoretical Chemistry/Quantum Chemistry, Technical University of Berlin , Sekr. C7, Straße des 17. Juni 135, 10623 Berlin, Germany.
J Am Chem Soc. 2018 Feb 14;140(6):2135-2144. doi: 10.1021/jacs.7b10148. Epub 2018 Jan 30.
Understanding host-guest interactions is one of the key requirements for adjusting properties in metal-organic frameworks (MOFs). In particular, systems with coordinatively unsaturated Lewis acidic metal sites feature highly selective adsorption processes. This is attributed to strong interactions with Lewis basic guest molecules. Here we show that a combination of C MAS NMR spectroscopy with state-of-the-art density functional theory (DFT) calculations allows one to unravel the interactions of water, 2-aminopyridine, 3-aminopyridine, and diethylamine with the open metal sites in Cr-MIL-101. The C MAS NMR spectra, obtained with ultrafast magic-angle spinning, are well resolved, with resonances distributed over 1000 ppm. They present a clear signature for each guest at the open metal sites. Based on competition experiments this leads to the following binding preference: water < diethylamine ≈ 2-aminopyridine < 3-aminopyridine. Assignments were done by exploiting distance sum relations derived from spin-lattice relaxation data and C{H} REDOR spectral editing. The experimental data were used to validate NMR shifts computed for the Cr-MIL-101 derivatives, which contain CrO clusters with magnetically coupled metal centers. While both approaches provide an unequivocal assignment and the arrangement of the guests at the open metal sites, the NMR data offer additional information about the guest and framework dynamics. We expect that our strategy has the potential for probing the binding situation of adsorbate mixtures at the open metal sites of MOFs in general and thus accesses the microscopic interaction mechanisms for this important material class, which is essential for deriving structure-property relationships.
理解主客体相互作用是调整金属有机骨架(MOFs)性质的关键要求之一。特别是具有配位不饱和路易斯酸性金属位点的系统具有高度选择性的吸附过程。这归因于与路易斯碱性客体分子的强相互作用。在这里,我们展示了 C MAS NMR 光谱与最先进的密度泛函理论(DFT)计算的结合,可用于揭示水、2-氨基吡啶、3-氨基吡啶和二乙胺与 Cr-MIL-101 中开放金属位点的相互作用。使用超快魔角旋转获得的 C MAS NMR 光谱具有良好的分辨率,共振分布在 1000 ppm 以上。它们在开放金属位点上为每个客体呈现出清晰的特征。基于竞争实验,得出以下结合偏好:水 < 二乙胺 ≈ 2-氨基吡啶 < 3-氨基吡啶。通过利用来自自旋晶格弛豫数据的距离和关系和 C{H} REDOR 光谱编辑来进行分配。实验数据用于验证为 Cr-MIL-101 衍生物计算的 NMR 位移,该衍生物包含具有磁耦合金属中心的 CrO 簇。虽然这两种方法都提供了明确的分配和客体在开放金属位点上的排列,但 NMR 数据提供了有关客体和框架动力学的附加信息。我们期望我们的策略具有探测 MOFs 中开放金属位点上吸附混合物结合情况的潜力,从而为这个重要材料类别的微观相互作用机制提供了访问途径,这对于推导结构-性能关系至关重要。