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9-乙炔基菲在手性金属表面的近对映体纯三聚反应

Near-Enantiopure Trimerization of 9-Ethynylphenanthrene on a Chiral Metal Surface.

作者信息

Stolz Samuel, Yakutovich Aliaksandr V, Prinz Jan, Dienel Thomas, Pignedoli Carlo A, Brune Harald, Gröning Oliver, Widmer Roland

机构信息

nanotech@surfaces Laboratory, Empa-Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600, Dübendorf, Switzerland.

Institute of Physics, École Polytechnique Fédérale de Lausanne, 1015, Lausanne, Switzerland.

出版信息

Angew Chem Int Ed Engl. 2020 Oct 5;59(41):18179-18183. doi: 10.1002/anie.202006844. Epub 2020 Aug 13.

Abstract

Enantioselectivity in heterogeneous catalysis strongly depends on the chirality transfer between catalyst surface and all reactants, intermediates, and the product along the reaction pathway. Herein we report the first enantioselective on-surface synthesis of molecular structures from an initial racemic mixture and without the need of enantiopure modifier molecules. The reaction consists of a trimerization via an unidentified bonding motif of prochiral 9-ethynylphenanthrene (9-EP) upon annealing to 500 K on the chiral Pd -terminated PdGa{111} surfaces into essentially enantiopure, homochiral 9-EP propellers. The observed behavior strongly contrasts the reaction of 9-EP on the chiral Pd -terminated PdGa{111} surfaces, where 9-EP monomers that are in nearly enantiopure configuration, dimerize without enantiomeric excess. Our findings demonstrate strong chiral recognition and a significant ensemble effect in the PdGa system, hence highlighting the huge potential of chiral intermetallic compounds for enantioselective synthesis and underlining the importance to control the catalytically active sites at the atomic level.

摘要

多相催化中的对映选择性强烈依赖于催化剂表面与反应路径上所有反应物、中间体和产物之间的手性传递。在此,我们报道了首例从初始外消旋混合物出发、无需对映体纯修饰分子的分子结构对映选择性表面合成。该反应包括在手性Pd端封的PdGa{111}表面退火至500 K时,前手性9-乙炔基菲(9-EP)通过一种未明确的键合模式三聚,生成基本对映体纯的同手性9-EP螺旋桨。观察到的行为与9-EP在手性Pd端封的PdGa{111}表面的反应形成强烈对比,在该表面上,几乎处于对映体纯构型的9-EP单体二聚,没有对映体过量。我们的研究结果证明了PdGa体系中强烈的手性识别和显著的系综效应,从而突出了手性金属间化合物在对映选择性合成方面的巨大潜力,并强调了在原子水平上控制催化活性位点的重要性。

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