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Solid-State NMR Techniques for the Structural Characterization of Cyclic Aggregates Based on Borane–Phosphane Frustrated Lewis Pairs

机译:基于硼烷 - 膦抑制刘易斯对的循环聚集体的结构表征的固态NMR技术

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摘要

Modern solid-state NMR techniques offer a wide range of opportunities for the structural characterization of frustrated Lewis pairs (FLPs), their aggregates, and the products of cooperative addition reactions at their two Lewis centers. This information is extremely valuable for materials that elude structural characterization by X-ray diffraction because of their nanocrystalline or amorphous character, (pseudo-)polymorphism, or other types of disordering phenomena inherent in the solid state. Aside from simple chemical shift measurements using single-pulse or cross-polarization/magic-angle spinning NMR detection techniques, the availability of advanced multidimensional and double-resonance NMR methods greatly deepened the informational content of these experiments. In particular, methods quantifying the magnetic dipole−dipole interaction strengths and indirect spin−spin interactions prove useful for the measurement of intermolecular association, connectivity, assessment of FLP−ligand distributions, and the stereochemistry of adducts. The present review illustrates several important solid-state NMR methods with some insightful applications to open questions in FLP chemistry, with a particular focus on supramolecular associates.
机译:现代固态NMR技术为令人沮丧的刘易斯对(FLPS),汇集和两种刘易斯中心的合作添加反应产品提供了广泛的机会。由于其纳米晶或无定形特性,(假)多态性,或固态固定的其他类型的无序现象,因此该信息对于X射线衍射进行结构表征的材料非常有价值。除了使用单脉冲或交叉偏振/魔术角纺丝NMR检测技术的简单化学换档测量,先进的多维和双共振NMR方法的可用性大大加深了这些实验的信息含量。特别地,定量磁性偶极 - 偶极相互作用强度和间接旋转旋转相互作用的方法可用于测量分子间关联,连接性,对FLP-配体分布的连接以及加合物的立体化学。本综述说明了具有一些重要的固态NMR方法,其中有一些富有识别的应用来打开FLP化学中的问题,特别关注超分子联系人。

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