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Consequence of one-electron oxidation and one-electron reduction for aniline

机译:苯胺的一电子氧化和一电子还原的后果

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摘要

Quantum-chemical calculations were performed for all possible isomers of neutral aniline and its redox forms, and intramolecular proton-transfer (prototropy) accompanied by π-electron delocalization was analyzed. One-electron oxidation (PhNH2 – e → [PhNH2]+•) has no important effect on tautomeric preferences. The enamine tautomer is preferred for oxidized aniline similarly as for the neutral molecule. Dramatical changes take place when proceeding from neutral to reduced aniline. One-electron reduction (PhNH2 + e → [PhNH2]-•) favors the imine tautomer. Independently on the state of oxidation, π- and n-electrons are more delocalized for the enamine than imine tautomers. The change of the tautomeric preferences for reduced aniline may partially explain the origin of the CH tautomers for reduced nucleobases (cytosine, adenine, and guanine).
机译:对中性苯胺及其氧化还原形式的所有可能异构体进行了量子化学计算,并分析了伴随π电子离域的分子内质子转移(原生质)。单电子氧化(PhNH2 – e→[PhNH2] +•)对互变异构首选项没有重要影响。与中性分子相似,烯胺互变异构体优选用于氧化苯胺。从中性到减少苯胺的过程发生了巨大变化。单电子还原(PhNH2 + e→[PhNH2] -•)有利于亚胺互变异构体。与亚胺互变异构体相比,烯胺的π电子和n电子独立于氧化状态的离域更大。减少苯胺的互变异构体偏好的变化可能部分解释了减少核碱基(胞嘧啶,腺嘌呤和鸟嘌呤)的CH互变异构体的起源。

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