Tian Yancong, Jakoobi Martin, Boulatov Roman, Sergeev Alexey G
Department of Chemistry, University of Liverpool Crown Street Liverpool L69 7ZD UK
Chem Sci. 2021 Jan 12;12(10):3568-3579. doi: 10.1039/d0sc05900e.
The cleavage of aromatic C-C bonds is central for conversion of fossil fuels into industrial chemicals and designing novel arene functionalisations through ring opening, expansion and contraction. However, the current progress is hampered by both the lack of experimental examples of selective oxidative addition of aromatic C-C bonds and limited understanding of the factors that favour insertion into the C-C rather than the C-H bonds. Here, we describe the comprehensive mechanism of the only reported chemo- and regioselective insertion of a transition metal into a range of substituted arene rings in simple iridium(i) complexes. The experimental and computational data reveal that this ring cleavage requires both reversible scission of a benzylic C-H bond and cooperativity of two Ir centres sandwiching the arene in the product-determining intermediate. The mechanism explains the chemoselectivity and scope of this unique C-C activation in industrially important methylarenes and provides a general insight into the role of metal-metal cooperativity in the cleavage of unsaturated C-C bonds.
芳香族碳-碳键的裂解对于将化石燃料转化为工业化学品以及通过开环、扩环和缩环设计新型芳烃官能团化至关重要。然而,目前的进展受到两方面的阻碍,一方面是缺乏芳香族碳-碳键选择性氧化加成的实验实例,另一方面是对有利于插入碳-碳键而非碳-氢键的因素了解有限。在此,我们描述了唯一报道的过渡金属在简单铱(I)配合物中对一系列取代芳烃环进行化学和区域选择性插入的完整机制。实验和计算数据表明,这种环裂解既需要苄基碳-氢键的可逆断裂,也需要在决定产物的中间体中两个夹着芳烃的铱中心的协同作用。该机制解释了在工业上重要的甲基芳烃中这种独特的碳-碳活化的化学选择性和范围,并为金属-金属协同作用在不饱和碳-碳键裂解中的作用提供了全面的认识。