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首页> 外文期刊>Journal of the American Chemical Society >An Experimental and Computational Approach to Defining Structure/Reactivity Relationships for Intramolecular Addition Reactions to Bicyclic Epoxonium Ions
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An Experimental and Computational Approach to Defining Structure/Reactivity Relationships for Intramolecular Addition Reactions to Bicyclic Epoxonium Ions

机译:定义分子内双环环氧In离子加成反应的结构/反应性关系的实验和计算方法

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In this manuscript we report that oxidative cleavage reactions can be used to form oxocarbenium ions that react with pendent epoxides to form bicyclic epoxonium ions as an entry to the formation of cyclic oligoether compounds. Bicyclic epoxonium ion structure was shown to have a dramatic impact on the ratio of exo- to endo-cyclization reactions, with bicyclo[4.1.0] intermediates showing a strong preference for endo-closures and bicyclo[3.1.0] intermediates showing a preference for exo-closures. Computational studies on the structures and energetics of the transition states using the B3LYP/6-31G(d) method provide substantial insight into the origins of this selectivity.
机译:在这份手稿中,我们报道了氧化裂解反应可用于形成氧碳鎓离子,后者与侧环氧化物反应形成双环环氧鎓离子,这是形成环状寡醚化合物的入口。研究表明,双环环氧化物离子结构对环外反应与内环化反应的比例具有显着影响,其中双环[4.1.0]中间体显示出对内封闭物的强烈偏爱,而双环[3.1.0]中间体显示出了内闭物的偏爱对外开放。使用B3LYP / 6-31G(d)方法对过渡态的结构和高能学进行计算研究,可以深入了解这种选择性的起源。

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