Laboratory of New Energy & New Functional Materials, Shaanxi Key Laboratory of Chemical Reaction Engineering, College of Chemistry and Chemical Engineering, Yan'an University, Yan'an 716000, China.
Int J Mol Sci. 2022 Oct 21;23(20):12679. doi: 10.3390/ijms232012679.
An operationally convenient Zn-catalyzed synthesis of alcohols by the reduction of aldehydes, ketones, and ,-unsaturated aldehydes/ketones is reported. It is a rare example of using mild and sustainable HBpin as a reductant for catalytic reduction of carbonyl compounds in the absence of acid or base as hydrolysis reagent. The reaction is upscalable and proceeds in high selectivity without the formation of boronate ester by-products, and tolerates sensitive functionalities, such as iodo, bromo, chloro, fluoro, nitro, trifluoromethyl, aminomethyl, alkynyl, and amide. The Zn(OAc)/HBpin combination has been also proved to be chemoselective for the C=N reduction of imine analogs.
报道了一种操作简便的 Zn 催化醇的合成方法,可通过还原醛、酮和α,β-不饱和醛/酮来实现。这是一个罕见的例子,使用温和可持续的 HBpin 作为还原剂,在没有酸或碱作为水解试剂的情况下,催化还原羰基化合物。该反应可规模化进行,具有高选择性,不会形成硼酸酯副产物,并且能够容忍敏感官能团,如碘、溴、氯、氟、硝基、三氟甲基、氨甲基、炔基和酰胺。Zn(OAc)/HBpin 组合也被证明对亚胺类似物的 C=N 还原具有化学选择性。