化学
极地的
电泳剂
亲核细胞
计算化学
Diels-Alder反应
密度泛函理论
极性(国际关系)
过渡状态
离子键合
化学物理
反应机理
化学极性
分子
有机化学
离子
催化作用
物理
生物化学
细胞
天文
作者
Luís R. Domingo,J.A. Sáez
摘要
A good correlation between the activation energy and the polar character of Diels–Alder reactions measured as the charge transfer at the transition state structure has been found. This electronic parameter controls the reaction rate to an even greater extent than other recognized structural features. The proposed polar mechanism, which is characterized by the electrophilic/nucleophilic interactions at the transition state structure, can be easily predicted by analyzing the electrophilicity/nucleophilicity indices defined within the conceptual density functional theory. Due to the significance of the polarity of the reaction, Diels–Alder reactions should be classified as non-polar (N), polar (P), and ionic (I).
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