催化作用
钯
化学
转移加氢
氢
Noyori不对称加氢
不对称氢化
催化加氢
组合化学
药物化学
有机化学
氢化物
质子
光化学
作者
Bo Wu,Jimin Yang,Shu-Bo Hu,Changbin Yu,Zi-Biao Zhao,Yi Luo,Yong-Gui Zhou
标识
DOI:10.1007/s11426-021-1049-9
摘要
The developments of hydrogen sources stand at the forefront of asymmetric reduction. In contrast to the well-studied alcohols as hydrogen sources via β-hydride elimination, the direct utilization of the proton of alcohols as a hydrogen source for activator-mediated asymmetric reduction is rarely explored. Herein we report the proton of alcohols as a hydrogen source in diboron-mediated palladium-catalyzed asymmetric transfer hydrogenation of 1,3-diketones and indoles, providing a series of chiral β-hydroxy ketones and indolines with excellent yields and enantioselectivities. This strategy would be useful for the synthesis of chiral deuterium-labelled compounds due to the ready availability of deuterium-labelled alcohols. Mechanistic investigations and DFT calculations revealed that active chiral Pd-H species was generated from the proton of alcohols by activating of tetrahydroxydiboron, hydrogen transfer was the rate-determining step, and the reaction preferred Pd(0)-catalyzed mechanism.
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