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Electron Delocalization in Electron-Deficient Alkenes and Push-Pull Alkenes

机译:电子缺陷烯烃和推泡烯烃中的电子离域化

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We have studied π electron delocalization in electron-deficient alkenes and push-pull alkenes by means of natural bond orbital analysis at the B3LYP/6-311+G(d,p) level. The study revealed that the rarely mentioned π electron donation from an electron-accepting group (Acc) toward the C=C double bond in push-pull alkenes and electron-deficient alkenes can provide up to 10% of total π electron stabilizing energy of a push-pull system and as much as 45% in a strongly electron-deficient tetracyanoethene. The Acc -> C=C bond p electron donation is more intense in s-trans than in s-cis conformational arrangement, but is less dependent on Z/E isomerism in push-pull alkenes, being slightly more pronounced in Z isomers. Among different Acc substituents, CN and COO- groups contribute the largest percent of stabilizing energy and NO2 the smallest. Increase in the number of Acc groups increases percentage contribution of Acc -> C=C bond p electron delocalization to a system stabilization. A difference in π~*C=C orbital occupancy between isomers can be related with their chemical reactivity.
机译:我们已经通过自然键轨道分析在B3LYP/6-311+G(d,p)水平上研究了电子缺陷烷烃和推力烷烃中的π电子定位。该研究表明,在推杆烷烃和电子缺陷型烷烃中,很少提到电子受访基团(ACC)向C = C双键捐赠的π电子捐赠可提供多达多达总π电子稳定能的10%。推扣系统,在极缺乏电子的四环乙烯中高达45%。与S-CIS构象排列相比,S-C = C = C键P电子捐赠更强烈,但是在推杆烷烃中,在Z异构体中略微依赖于Z/E同构。在不同的ACC取代基中,CN和COOUST贡献了稳定能量的最大百分比,而NO2最小。 ACC组数量的增加增加了ACC的百分比贡献 - > c = C键P电子定位对系统稳定。异构体之间的π〜*c = c轨道占用率的差异可能与它们的化学反应性有关。

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