Department of Chemistry, University of California, Berkeley, California 94720, USA.
J Am Chem Soc. 2013 Mar 13;135(10):3881-6. doi: 10.1021/ja310640b. Epub 2013 Mar 1.
Research to develop highly versatile, chiral, heterogeneous catalysts for asymmetric organic transformations, without quenching the catalytic reactivity, has met with limited success. While chiral supramolecular structures, connected by weak bonds, are highly active for homogeneous asymmetric catalysis, their application in heterogeneous catalysis is rare. In this work, asymmetric catalyst was prepared by encapsulating metallic nanoclusters in chiral self-assembled monolayer (SAM), immobilized on mesoporous SiO2 support. Using olefin cyclopropanation as an example, it was demonstrated that by controlling the SAM properties, asymmetric reactions can be catalyzed by Au clusters embedded in chiral SAM. Up to 50% enantioselectivity with high diastereoselectivity were obtained while employing Au nanoclusters coated with SAM peptides as heterogeneous catalyst for the formation of cyclopropane-containing products. Spectroscopic measurements correlated the improved enantioselectivity with the formation of a hydrogen-bonding network in the chiral SAM. These results demonstrate the synergetic effect of the catalytically active metallic sites and the surrounding chiral SAM for the formation of a mesoscale enantioselective catalyst.
研究开发高度多功能、手性、多相催化剂用于不对称有机转化,而不淬灭催化活性,取得的成功有限。虽然通过弱键连接的手性超分子结构对于均相不对称催化具有很高的活性,但它们在多相催化中的应用很少。在这项工作中,通过将金属纳米团簇封装在固定在介孔 SiO2 载体上的手性自组装单层(SAM)中,制备了不对称催化剂。以烯烃环丙烷化为实例,证明通过控制 SAM 的性质,可以通过嵌入手性 SAM 的 Au 团簇来催化不对称反应。当使用涂有 SAM 肽的 Au 纳米团簇作为形成含环丙烷产物的多相催化剂时,可获得高达 50%的对映选择性和高非对映选择性。光谱测量将提高的对映选择性与手性 SAM 中氢键网络的形成相关联。这些结果表明了催化活性金属位点和周围手性 SAM 对形成介观手性催化剂的协同效应。