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一种用于分子内稳定的硅路易斯酸的实验酸度标度。

An Experimental Acidity Scale for Intramolecularly Stabilized Silyl Lewis Acids.

机构信息

Carl von Ossietzky Universität Oldenburg, Carl von Ossietzky-Str. 9-11, 26129, Oldenburg, Germany, European Union.

出版信息

Chemistry. 2019 Nov 27;25(66):15123-15130. doi: 10.1002/chem.201903241. Epub 2019 Oct 31.

Abstract

A new NMR-based Lewis acidity scale is suggested and its application is demonstrated for a family of silyl Lewis acids. The reaction of p-fluorobenzonitrile (FBN) with silyl cations that are internally stabilized by interaction with a remote chalcogenyl or halogen donor yields silylated nitrilium ions with the silicon atom in a trigonal bipyramidal coordination environment. The F NMR chemical shifts and the J(CF) coupling constants of these nitrilium ions vary in a predictable manner with the donor capability of the stabilizing group. The spectroscopic parameters are suitable probes for scaling the acidity of Lewis acids. These new probes allow for the discrimination between very similar Lewis acids, which is not possible with conventional NMR tests, such as the well-established Gutmann-Beckett method.

摘要

提出了一种新的基于 NMR 的路易斯酸度标度,并将其应用于一系列硅基路易斯酸。通过与远程硫属或卤素供体相互作用内部稳定的硅阳离子与对氟苯甲腈(FBN)反应,生成具有三斜双锥配位环境的硅原子的硅化腈鎓离子。这些腈鎓离子的 F NMR 化学位移和 J(CF)偶合常数随稳定基团的供体能力呈可预测的变化。这些光谱参数是路易斯酸度标度的合适探针。这些新探针可用于区分非常相似的路易斯酸,这是常规 NMR 测试(如成熟的 Gutmann-Beckett 方法)所不可能的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02e4/6899571/0f07c4f486a2/CHEM-25-15123-g001.jpg

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