Zhou Yu, Wu Ping, Cao Fanshu, Shi Lei, Zhang Ni, Xue Zuqian, Luo Gen
Institutes of Physical Science and Information Technology, Anhui University Hefei 230601 China
RSC Adv. 2022 May 5;12(22):13593-13599. doi: 10.1039/d2ra02180c.
The catalytic C-H alkylation with alkenes is of much interest and importance, as it offers a 100% atom efficient route for C-C bond construction. In the past decade, great progress in rare-earth catalysed C-H alkylation of various heteroatom-containing substrates with alkenes has been made. However, whether or how a heteroatom-containing substrate would influence the coordination or insertion of an alkene at the catalyst metal center remained elusive. In this work, the mechanism of Sc-catalysed C-H alkylation of sulfides with alkenes and dienes has been carefully examined by DFT calculations, which revealed that the alkene insertion could proceed a sulfide-facilitated mechanism. It has been found that a similar mechanism may also work for the C-H alkylation of other heteroatom-containing substrates such as pyridine and anisole. Moreover, the substrate-facilitated alkene insertion mechanism and a substrate-free one could be switched by fine-tuning the sterics of catalysts and substrates. This work provides new insights into the role of heteroatom-containing substrates in alkene-insertion-involved reactions, and may help guide designing new catalysis systems.
利用烯烃进行的催化C-H烷基化反应备受关注且具有重要意义,因为它为构建C-C键提供了一条原子利用率达100%的途径。在过去十年中,稀土催化各种含杂原子底物与烯烃的C-H烷基化反应取得了巨大进展。然而,含杂原子底物是否以及如何影响烯烃在催化剂金属中心的配位或插入仍不清楚。在这项工作中,通过密度泛函理论(DFT)计算仔细研究了钪催化硫化物与烯烃和二烯烃的C-H烷基化反应机理,结果表明烯烃插入可能通过硫化物促进的机理进行。已发现类似的机理可能也适用于其他含杂原子底物(如吡啶和苯甲醚)的C-H烷基化反应。此外,通过微调催化剂和底物的空间结构,可以切换底物促进的烯烃插入机理和无底物机理。这项工作为含杂原子底物在涉及烯烃插入的反应中的作用提供了新的见解,并可能有助于指导新型催化体系的设计。