Department of Chemistry, Indian Institute of Technology Madras, Chennai 600036, India.
Org Biomol Chem. 2022 Mar 2;20(9):1945-1951. doi: 10.1039/d2ob00034b.
Ru-Complexes of chelating heteroditopic N-heterocyclic carbene ligands featuring imidazol-2-ylidene (ImNHC) and 1,2,3-triazol-5-ylidene (tzNHC) donors connected a CH spacer, 1a-c, were found to be very effective catalysts for the cross-coupling of secondary and primary alcohols with the elimination of HO. Diverse β-alkylated secondary alcohols were thus obtained by following this method in excellent yields of up to 95% by employing a very low catalyst (1a) loading of 0.01-0.001 mol% along with the inexpensive base KOH. Mechanistically, the present protocol follows the borrowing hydrogen strategy which was established by various control experiments including deuterium labelling experiments and importantly, H NMR and ESI-MS analyses validated the participation of a Ru-H species in the catalytic cycle. Remarkably, the present system displayed the highest Ru-based TON of 396 000 for the β-benzylation of 1-phenylethanol with a catalyst loading of 1 ppm (0.0001 mol%). Additionally, diverse 2-alkylaminoquinoline derivatives were synthesized in a one-pot manner from 2-aminobenzyl alcohol, 2-arylacetonitrile, and various primary alcohols.
具有咪唑-2-亚基(ImNHC)和 1,2,3-三唑-5-亚基(tzNHC)供体的螯合杂双位 N-杂环卡宾配体的 Ru-配合物,通过 CH 间隔基连接,被发现是仲醇和伯醇与 HO 消除的交叉偶联的非常有效的催化剂。通过采用非常低的催化剂(1a)负载量 0.01-0.001 mol%以及廉价的碱 KOH,遵循该方法可以获得各种β-烷基化的仲醇,产率高达 95%。在机理上,本方案遵循借氢策略,通过包括氘标记实验在内的各种控制实验以及重要的 H NMR 和 ESI-MS 分析证实了 Ru-H 物种在催化循环中的参与。值得注意的是,本体系在催化剂负载量为 1 ppm(0.0001 mol%)时,对 1-苯乙醇的β-苄基化反应表现出最高的基于 Ru 的 TON 值 396000。此外,还可以通过一锅法从 2-氨基苄醇、2-芳基乙腈和各种伯醇合成各种 2-烷氨基喹啉衍生物。