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首页> 外文期刊>The Journal of Organic Chemistry >NMR Quantification of the Effects of Ligands and Counterions on Lewis Acid Catalysis
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NMR Quantification of the Effects of Ligands and Counterions on Lewis Acid Catalysis

机译:NMR定量配体和抗衡离子对路易斯酸催化作用的影响

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摘要

The relative Lewis acidity of a variety of metal-ligand catalyst complexes is quantified using P-31 NMR spectroscopy. Three P-31 NMR probes, including two new bidentate binding probes, are compared on the basis of different binding modes (i.e., monodentate vs bidentate) and the relative scale of their downfield shift upon binding to Lewis acid complexes. Bidentate coordination of catalyst complexes including metal catalysts, ligands, and counterions were assessed due to their importance to asymmetric catalysis. The effect of ligands, counterions, and additives on Lewis acidity is quantified and correlated to reaction yield at an early time point as an approximation for catalytic activity/efficiency and chelation mode in two organic transformations. Binding studies were performed under catalytically relevant conditions, giving further applicability to synthesis. Insight into activation modes are revealed through this analysis.
机译:使用P-31 NMR光谱定量各种金属配体催化剂配合物的相对路易斯酸度。 基于不同的结合模式(即单曲型与二齿)和在与路易斯酸复合物结合时,将包括两个新的双齿结合探针的三种P-31 NMR探针(包括两个新的二齿结合探针)进行比较。 由于它们对不对称催化的重要性,评估了包括金属催化剂,配体和反逆等催化剂配合物的二齿配位。 配体,抗衡离子和添加剂对Lewis酸度的影响被定量和与早期时间点的反应产率相关,作为催化活性/效率和螯合模式在两个有机转化中的近似。 在催化相关条件下进行结合研究,进一步适用于合成。 通过该分析揭示了对激活模式的洞察。

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