Zhu Quan, Luo Yunsong, Guo Yongyan, Zhang Yushun, Tao Yunhai
Kunming Biohome Technology Co. Limited, Kunming 650501, PR China.
School of Chemical Science and Technology, Yunnan University, Kunming 650091, PR China.
J Org Chem. 2021 Apr 16;86(8):5463-5476. doi: 10.1021/acs.joc.0c02987. Epub 2021 Mar 25.
A highly efficient and practical Pd(II)/Cu(OAc)-catalyst system of Saegusa oxidation, which converts enol ethers to the corresponding enals with a number of diverse substrates at extremely low catalyst loadings (500 mol ppm) under ligand-free and aqueous conditions, is described. Its synthetic utility was demonstrated by large-scale applications of the catalyst system to important nature molecules. This work allows Saegusa oxidation to become a highly practical approach to preparing enals and also suggests new insight into the Pd(II)/Cu(II)-catalyst system for dehydrogenation of carbonyl compounds and decreasing Pd-catalyst loadings.
描述了一种高效实用的用于Saegusa氧化反应的Pd(II)/Cu(OAc)催化体系,该体系在无配体和水性条件下,能以极低的催化剂负载量(500摩尔ppm)将烯醇醚转化为相应的烯醛,且适用于多种不同底物。通过将该催化体系大规模应用于重要天然分子,证明了其合成实用性。这项工作使Saegusa氧化反应成为一种制备烯醛的高度实用方法,也为用于羰基化合物脱氢和降低钯催化剂负载量的Pd(II)/Cu(II)催化体系提供了新的见解。