Corpas Javier, Arpa Enrique M, Lapierre Romain, Corral Inés, Mauleón Pablo, Arrayás Ramón Gómez, Carretero Juan C
Departamento de Química Orgánica, Facultad de Ciencias, Universidad Autónoma de Madrid (UAM), 28049 Madrid, Spain.
Division of Theoretical Chemistry, IFM, Linköping University, 581 83 Linköping, Sweden.
ACS Catal. 2022 Jun 3;12(11):6596-6605. doi: 10.1021/acscatal.2c00710. Epub 2022 May 19.
The cooperative action of the acetate ligand, the 2-pyridyl sulfonyl (SOPy) directing group on the alkyne substrate, and the palladium catalyst has been shown to be crucial for controlling reactivity, regioselectivity, and stereoselectivity in the acetoxylation of unsymmetrical internal alkynes under mild reaction conditions. The corresponding alkenyl acetates were obtained in good yields with complete levels of β-regioselectivity and -acetoxypalladation stereocontrol. Experimental and computational analyses provide insight into the reasons behind this delicate interplay between the ligand, directing group, and the metal in the reaction mechanism. In fact, these studies unveil the multiple important roles of the acetate ligand in the coordination sphere at the Pd center: (i) it brings the acetic acid reagent into close proximity to the metal to allow the simultaneous activation of the alkyne and the acetic acid, (ii) it serves as an inner-sphere base while enhancing the nucleophilicity of the acid, and (iii) it acts as an intramolecular acid to facilitate protodemetalation and regeneration of the catalyst. Further insight into the origin of the observed regiocontrol is provided by the mapping of potential energy profiles and distortion-interaction analysis.
已证明,在温和的反应条件下,乙酸根配体、炔烃底物上的2-吡啶基磺酰基(SOPy)导向基团与钯催化剂的协同作用对于控制不对称内炔烃乙酰氧基化反应中的反应活性、区域选择性和立体选择性至关重要。相应的烯基乙酸酯以良好的产率得到,具有完全的β-区域选择性和乙酰氧基钯化立体控制水平。实验和计算分析深入了解了反应机理中配体、导向基团和金属之间这种微妙相互作用背后的原因。事实上,这些研究揭示了乙酸根配体在钯中心配位球中的多重重要作用:(i)它使乙酸试剂靠近金属,从而使炔烃和乙酸同时被活化;(ii)它作为内球碱,同时增强酸的亲核性;(iii)它作为分子内酸,促进原脱金属化和催化剂的再生。势能剖面图和畸变-相互作用分析进一步深入了解了观察到的区域控制的起源。