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Mechanistic insights on the Pd-catalyzed addition of C–X bonds across alkynes – a combined experimental and computational study

机译:关于在Pd上跨炔烃C-X键加成的机理的见解–结合实验和计算研究

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摘要

The Pd-catalyzed intramolecular addition of carbamoyl chlorides and aryl halides across alkynes is investigated by means of DFT calculations and mechanistic test experiments. The data suggest a mechanistic pathway that involves oxidative addition, alkyne insertion, cis → trans isomerization and reductive elimination. Our data indicate that oxidative addition is the reactivity limiting step in the addition of aryl chlorides and bromides across alkynes. However, for the corresponding addition of carbamoyl chlorides, alkyne insertion is found to be limiting. Full energetic reaction pathways for the intramolecular additions across alkynes are presented herein and the role of ligands, alkyne substituents and tether moieties are discussed. Notably, the calculations could rationalize a pronounced effect of the alkyne substituent, which accounts for the exceptional reactivity of TIPS-substituted alkynes. In particular, the bulky silyl moiety is shown to significantly destabilize the formed Pd(ii)-intermediates, thus facilitating both cis → trans isomerization and reductive elimination, which overall results in a flatter energetic landscape and a therefore increased catalytic efficiency.
机译:通过DFT计算和机理测试实验研究了钯催化的氨基甲酰氯和芳基卤化物在分子内的加成反应。数据表明涉及氧化加成,炔烃插入,顺式→反式异构化和还原性消除的机理途径。我们的数据表明,氧化加成是跨炔烃添加芳基氯和溴化物的反应限制步骤。然而,对于相应的氨基甲酰氯的添加,发现炔烃的插入是限制性的。本文介绍了跨炔烃的分子内加成的完全能量反应途径,并讨论了配体,炔烃取代基和系链部分的作用。值得注意的是,这些计算可以使炔烃取代基的显着影响合理化,这说明了TIPS取代的炔烃具有出色的反应活性。特别地,显示出庞大的甲硅烷基部分显着地破坏了所形成的Pd(ii)-中间体,从而促进了顺式→反式异构化和还原消除,这总体上导致了较平坦的能量态并因此提高了催化效率。

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