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Dyotropic rearrangement of a-lactone to P-lactone: a computational study of small-ring halolactonisation

机译:A-内酯向P-内酯的阳离子重排:小环卤代内酯化的计算研究

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摘要

Transition structures have been optimised using the B3LYP/6-31+G~* density functional level method, in vacuum and in implicit (PCM) and explicit (DFT/MM) aqueous solvation, for the degenerate rearrangement of the a-lactone derived by the formal addition of Cl~+ to acrylate anion and for the dyotropic rearrangement of this to the p-lactone. Despite being lower in energy than the a-lactone, there is no direct pathway to the P-lactone from the acrylate chloronium zwitterion, which is the transition structure for the degenerate rearrangement. This may be rationalised by consideration of the unfavorable angle of attack by the carboxylate nucleophile on the P-position; attack on the a-position involves a less unfavorable angle. Formation of the P-lactone may occur by means of a dyotropic rearrangement of the a-lactone. This involves a high energy barrier for the acrylate derived a-lactone, but dyotropic rearrangement of the p,P-dimethyl substituted a-lactone to the corresponding P-lactone involves a much lower barrier, estimated at about 46 kJ mol~(-1) in water, and is predicted to be a facile process.
机译:使用B3LYP / 6-31 + G〜*密度泛函方法对过渡结构进行了优化,在真空和隐式(PCM)和显式(DFT / MM)水溶液溶剂化中,可通过以下方法对α-内酯进行简并重排:将Cl〜+正式加成到丙烯酸酯阴离子上,并使其向右内酯重整。尽管其能量低于α-内酯,但没有从丙烯酸氯鎓两性离子到P-内酯的直接途径,这是简并重排的过渡结构。这可以通过考虑羧酸盐亲核试剂在P位上的不利攻角来合理化。攻击α位的角度较小。 P-内酯的形成可通过α-内酯的各向异性重排而发生。这涉及丙烯酸酯衍生的α-内酯的高能垒,但是p,P-二甲基取代的α-内酯向相应的P-内酯的阳离子重排涉及低得多的势垒,估计为约46 kJ mol〜(-1 )在水中,并且预计将是一个容易的过程。

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