首页> 美国卫生研究院文献>Beilstein Journal of Organic Chemistry >Are boat transition states likely to occur in Cope rearrangements? A DFT study of the biogenesis of germacranes
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Are boat transition states likely to occur in Cope rearrangements? A DFT study of the biogenesis of germacranes

机译:应对应对重排中可能会出现船的过渡状态吗? DFT研究细菌生殖器的生物发生

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摘要

It has been proposed that elemanes are biogenetically formed from germacranes by Cope sigmatropic rearrangements. Normally, this reaction proceeds through a transition state with a chair conformation. However, the transformation of schkuhriolide (germacrane) into elemanschkuhriolide (elemane) may occur through a boat transition state due to the final configuration of the elemanschkuhriolide, but this transition state is questionable due to its high energy. The possible mechanisms of this transformation were studied in the density functional theory frame. The mechanistic differences between the transformation of (Z,E)-germacranes and (E,E)-germacranes were also studied. We found that (Z,E)-germacranolides are significantly more stable than (E,E)-germacranolides and elemanolides. In the specific case of schkuhriolide, even when the boat transition state is not energetically favored, a previous hemiacetalization lowers enough the energetic barrier to allow the formation of a very stable elemanolide that is even more stable than its (Z,E)-germacrane.
机译:已经提出,通过Cope sigmatropic重排,从胚芽生物上形成了elemanes。通常,该反应通过具有椅子构象的过渡态进行。然而,由于苦参碱的最终构型,schkuhriolide(germacrane)转变为elemanschkuhriolide(elemane)可能会通过船转变态发生,但是由于其高能量,这种转变态值得怀疑。在密度泛函理论框架内研究了这种转变的可能机制。还研究了(Z,E)-germacranes和(E,E)-germacranes转化之间的机理差异。我们发现(Z,E)-germacranolides比(E,E)-germacranolides和elemanolides稳定得多。在schkuhriolide的特定情况下,即使不大力推动船形过渡态,先前的半缩醛化作用也降低了能量屏障,足以形成比(Z,E)-germacrane更加稳定的非常稳定的依马洛内酯。

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