Institut für Organische Chemie, Albert-Ludwigs-Universität , 79104 Freiburg, Germany.
J Am Chem Soc. 2014 Jan 22;136(3):1097-104. doi: 10.1021/ja411204d. Epub 2014 Jan 8.
Previously we reported the redox-neutral atom economic rhodium catalyzed coupling of terminal alkynes with carboxylic acids using the DPEphos ligand. We herein present a thorough mechanistic investigation applying various spectroscopic and spectrometric methods (NMR, in situ-IR, ESI-MS) in combination with DFT calculations. Our findings show that in contrast to the originally proposed mechanism, the catalytic cycle involves an intramolecular protonation and not an oxidative insertion of rhodium in the OH bond of the carboxylic acid. A σ-allyl complex was identified as the resting state of the catalytic transformation and characterized by X-ray crystallographic analysis. By means of ESI-MS investigations we were able to detect a reactive intermediate of the catalytic cycle.
此前,我们报道了 DPEphos 配体促进的铑催化末端炔烃与羧酸的氧化中性原子经济性偶联反应。在此,我们应用各种光谱和光谱方法(NMR、原位-IR、ESI-MS)结合 DFT 计算,对这一反应进行了全面的机理研究。我们的研究结果表明,与最初提出的机理相反,催化循环涉及分子内质子化,而不是羧酸中 OH 键的铑的氧化插入。σ-烯丙基络合物被确定为催化转化的休眠状态,并通过 X 射线晶体学分析进行了表征。通过 ESI-MS 研究,我们能够检测到催化循环中的一个活性中间体。