Unraveling the Pathway of Gold(I)-Catalyzed Olefin Hydrogenation: An Ionic Mechanism

被引:42
作者
Comas-Vives, Aleix [1 ,2 ]
Ujaque, Gregori [2 ]
机构
[1] ETH, Dept Chem, CH-8093 Zurich, Switzerland
[2] Univ Autonoma Barcelona, Unitat Quim Fis, Dept Quim, E-08193 Bellaterra, Catalonia, Spain
关键词
HYDROXYCYCLOPENTADIENYL RUTHENIUM HYDRIDE; ASYMMETRIC TRANSFER HYDROGENATION; FULL CATALYTIC CYCLE; AB-INITIO; PROTON-TRANSFER; GOLD CATALYSIS; INTERMOLECULAR HYDROAMINATION; THEORETICAL CHEMISTRY; NUCLEOPHILIC-ADDITION; ELECTRONIC-PROPERTIES;
D O I
10.1021/ja305630z
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The reaction mechanism of olefin hydrogenation catalyzed by the bimetallic gold catalyst {(AuCl)(2)[(R,R)-Me-DuPhos]} was studied by means of density functional theory calculations. This catalyst is enantioselective for the homogeneous hydrogenation of olefins and imines. The reaction mechanism involves activation of the H-2 molecule. This process takes place heterolytically, generating a metal-hydride complex as the active species and releasing a proton (formally EtOH2+) and a chloride ion to the medium. The hydrogenation reaction proceeds through an ionic mechanism in which the gold catalyst provides a hydride and the proton comes from the solvent. The reaction mechanism ends up with H-2 coordination and subsequent heterolytic cleavage, regenerating the gold(I)-hydride active species. Significant differences were found in the reaction mechanism depending on the nature of the substrate (ethene, cyclohexene, or diethyl 2-benzylidenesuccinate) and the character of the catalyst (mono- or bimetallic). Our data suggest that for prochiral substrates, the step that determines the enantioselectivity within the ionic mechanism involves a proton transfer.
引用
收藏
页码:1295 / 1305
页数:11
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