Institute of Organic Chemistry, Eberhard Karls University of Tuebingen, Auf der Morgenstelle 18, 72076, Tuebingen, Germany.
Chemistry. 2018 Aug 22;24(47):12259-12263. doi: 10.1002/chem.201801466. Epub 2018 May 22.
We report the first homogeneous palladium-based transfer hydrogenolysis of benzylic alcohols using an in situ formed palladium-phosphine complex and formic acid as reducing agent. The reaction requires a catalyst loading as low as only 1 mol % of palladium and just a slight excess of reductant to obtain the deoxygenated alkylarenes in good to excellent yields. Besides demonstrating the broad applicability for primary, secondary and tertiary benzylic alcohols, a reaction intermediate could be identified. Additionally, it could be shown that partial oxidation of the applied phosphine ligand was beneficial for the course of the reaction, presumably by stabilizing the active catalyst. Reaction profiles and catalyst poisoning experiments were used to characterize the catalyst, the results of which indicate a homogeneous metal complex as the active species.
我们首次报道了使用原位形成的钯-膦配合物和甲酸作为还原剂,实现了苄醇的均相钯转移氢化反应。该反应仅需 1mol%的钯作为催化剂负载量,只需稍过量的还原剂,即可获得脱氧芳基烷基化合物,产率良好至优秀。除了证明该方法对伯、仲和叔苄醇具有广泛的适用性外,还可以鉴定出反应中间体。此外,还可以表明,所应用的膦配体的部分氧化有利于反应的进行,可能是通过稳定活性催化剂。通过反应曲线和催化剂中毒实验对催化剂进行了表征,结果表明该反应是以均相金属配合物作为活性物种进行的。