首页> 外文期刊>The Journal of Organic Chemistry >Concerted [4+2] and Stepwise (2+2) Cycloadditions of Tetrafluoroethylene with Butadiene: DFT and DLPNO-UCCSD(T) Explorations
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Concerted [4+2] and Stepwise (2+2) Cycloadditions of Tetrafluoroethylene with Butadiene: DFT and DLPNO-UCCSD(T) Explorations

机译:Concorted [4 + 2]和逐步(2 + 2)四氟乙烯与丁二烯的环加成:DFT和DLPNO-UCCSD(T)探索

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摘要

Tetrafluoroethylene and butadiene form the 2 + 2 cycloadduct under kinetic control, but the Diels-Alder cycloadduct is formed under thermodynamic control. Borden and Getty showed that the preference for 2 + 2 cycloaddition is due to the necessity for syn-pyramidalization of the two CF2 groups in the 4 + 2 transition state. We have explored the full potential energy surface for the concerted and stepwise reactions of tetrafluoroethylene and butadiene with density functional theory, DFT (B3LYP and M06-2X), DLPNO-UCCSD(T), and CASSCF-NEVPT2 methods and with the distortion/interaction-activation strain model to explain the energetics of different pathways. The 2 + 2 cycloadduct is formed by an anti-transition state followed by two rotations and a final bond formation transition state. Energetics are compared to the reaction of maleic anhydride and ethylene.
机译:四氟乙烯和丁二烯在动力学控制下形成2 + 2环形化学,但在热力控制下形成DIELS-桤木环形化。 BODEN和GETTY表明,2 + 2环加入的偏好是由于4 + 2过渡状态中的两个CF2组的同步冠状动脉化的必要性。 我们已经探索了四氟乙烯和丁二烯的齐节和逐步反应的全潜在能量表面,具有密度官能理论,DFT(B3LYP和M06-2X),DLPNO-UCCSD(T)和CASSCF-NEVPT2方法以及失真/交互 -Activation应变模型解释不同途径的能量学。 2 + 2环形加成由抗转换状态形成,然后是两个旋转和最终键合形成过渡状态。 将活性与马来酸酐和乙烯的反应进行比较。

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