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Influence of the acetylenic substituent on the intramolecular carbolithiation of alkynes: A DFT theoretical study

机译:炔基取代基对炔烃分子内碳锂化的影响:DFT理论研究

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A theoretical study of the intramolecular 5-exo-dig carbolithiation of substituted propargyl o-lithioaryl ethers, leading to dihydrobenzofurans, has been performed. The results show that a DFT description of the reaction (B3P86, 6-31G**) matches the experimental data provided that an explicit solvation by two molecules of THF is considered. To take place, the cyclization also implies that the acetylenic chain adopts a conformation in which a significant interaction arises between the lithium and the C? - 1/2 C triple bond. Reaching the cyclization TS requires the passage of an activation barrier that should not be higher than 12-13 kcal mol~(-1). From a thermodynamic point of view, the reaction is exothermic whatever the substituent R (from approximately -40 to -62 kcal mol~(-1)). In the starting substrate, a supplementary interaction between the Li and a substituent at the propargylic position can develop, influencing the future double-bond configuration. Thus, derivatives exhibiting an R-Li interaction tend to provide E olefins. In contrast, when no coordination between the lithium cation and the terminal R occurs, syn carbolithiation takes place, and the configuration of the exocyclic olefin is likely to be Z. This hypothesis accounts for most of the experimental results published before.
机译:对取代的炔丙基邻硫代芳基醚的分子内5-exo-dig羰基化反应进行了理论研究,从而生成了二氢苯并呋喃。结果表明,该反应的DFT描述(B3P86,6-31G **)与实验数据匹配,只要考虑到两个THF分子的明确溶剂化即可。为了发生,环化还意味着炔链采用一种构象,其中在锂和C 2+之间发生显着的相互作用。 -1/2 C三键。达到环化TS需要通过不高于12-13kcal mol〜(-1)的活化势垒。从热力学观点来看,无论取代基R如何(从大约-40到-62kcal mol·(-1)),反应都是放热的。在起始底物中,可以在锂和炔丙基位置上的取代基之间形成互补相互作用,从而影响未来的双键构型。因此,表现出R-Li相互作用的衍生物倾向于提供E-烯烃。相反,当锂阳离子与末端R之间不发生配位时,会发生同位碳环化反应,并且环外烯烃的构型很可能是Z。这一假设解释了之前发表的大部分实验结果。

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