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Size-Driven Inversion of Selectivity in Esterification Reactions: Secondary Beat Primary Alcohols

机译:酯化反应中选择性的大小驱动反演:二次击败伯醇

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Relative rates for the Lewis base-mediated acylation of secondary and primary alcohols carrying large aromatic side chains with anhydrides differing in size and electronic structure have been measured. While primary alcohols react faster than secondary ones in transformations with monosubstituted benzoic anhydride derivatives, relative reactivities are inverted in reactions with sterically biased 1-naphthyl anhydrides. Further analysis of reaction rates shows that increasing substrate size leads to an actual acceleration of the acylation process, the effect being larger for secondary as compared to primary alcohols. Computational results indicate that acylation rates are guided by noncovalent interactions (NCIs) between the catalyst ring system and the DED substituents in the alcohol and anhydride reactants. Thereby stronger NCIs are formed for secondary alcohols than for primary alcohols.
机译:测量了带有大芳香侧链的仲醇和伯醇与尺寸和电子结构不同的酸酐的路易斯碱介导的酰化反应的相对速率。虽然伯醇在与单取代苯甲酸酐衍生物的转化中的反应速度比仲醇快,但在与空间偏向的1-萘酸酐的反应中,相对反应性是相反的。对反应速率的进一步分析表明,底物尺寸的增加导致酰化过程的实际加速,与伯醇相比,仲醇的影响更大。计算结果表明,酰化速率受催化剂环系统与醇和酸酐反应物中的DED取代基之间的非共价相互作用(NCIs)控制。因此,仲醇比伯醇形成更强的NCI。

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