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Changing the regioselectivity and asynchronicity of the possible concerted [2+2] and [4+2] cycloadditions of ketene and halogenated ketenes with cyclopentadiene: a DFT survey

机译:改变乙烯酮和卤代乙烯酮与环戊二烯的可能一致的[2 + 2]和[4 + 2]环加成反应的区域选择性和异步性:DFT调查

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摘要

Two concerted DielseAlder [4+2] and two concerted Staudinger [2+2] reactions between ketene and/or dihaloketenes with cyclopentadiene are examined at B3LYP/6-31+G~* level. For the parent ketene, two cycloaddition modes including [2+2] across the C]C and [4+2] across the C]C bond of ketene are thermodynamically favorable (△E=-13.4 and -17.3 kcal/mol, respectively) while the two other including [2+2] across the C=O and [4+2] across the C=O bond of ketene are endoergic. The corresponding barrier heights change to a lesser amount and ranging from 20.8 to 35.1 kcal/mol. Halogenated ketenes significantly affect both the thermodynamics and kinetics of these reactions in a way that they increase the exoergicity and reduce the barrier heights result in the decrease of regioselectivity. Unsymmetrical bond formations in the structures of TSs indicate that all the reaction modes are concerted and synchronous but halogens increase the asynchronicity due to the electronic effects. Moreover, three transient halogenated cycloadducts obtained through the [4+2] cycloaddition across the C=O bond are converted to some new products via a [3,3] sigmatropic rearrangement. The AIM pictures show that in the [4+2] cycloadditions four TS structures represent pericyclic reactions, while all the [2+2] reactions are classified as pseudopericyclic. FMO theory is applied to justify the findings. The reliability of B3LYP results is confirmed through comparison with the HF and MP2 methods.
机译:在B3LYP / 6-31 + G〜*水平下,研究了乙烯酮和/或二卤代烯与环戊二烯之间的两个一致的DielseAlder [4 + 2]和两个一致的Staudinger [2 + 2]反应。对于母体烯酮,两个环加成模式包括烯酮的C2C上的[2 + 2]和烯酮的C] C键上的[4 + 2]的热力学上有利的(分别为△E = -13.4和-17.3 kcal / mol) )而乙烯酮的另外两个,包括跨C = O的[2 + 2]和跨C = O键的[4 + 2]。相应的势垒高度变化较小,范围为20.8至35.1 kcal / mol。卤代乙烯酮会以增加散热性和降低势垒高度的方式显着影响这些反应的热力学和动力学,从而导致区域选择性的降低。 TS的结构中不对称键的形成表明所有反应模式是一致且同步的,但由于电子效应,卤素会增加异步性。此外,通过[3,3]σ重排将通过[4 + 2]环加成反应通过C = O键获得的三个瞬时卤代环加合物转变为某些新产物。 AIM图片显示,在[4 + 2]环加成中,四个TS结构代表周环反应,而所有[2 + 2]反应均归类为伪周环。应用FMO理论来证明研究结果的合理性。通过与HF和MP2方法进行比较,可以确认B3LYP结果的可靠性。

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