Kitanosono Taku, Hisada Tomoya, Yamashita Yasuhiro, Kobayashi Shū
Department of Chemistry, School of Science, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo, Japan.
Angew Chem Int Ed Engl. 2021 Feb 15;60(7):3407-3411. doi: 10.1002/anie.202009989. Epub 2020 Dec 16.
Metal-bound water molecules have recently been recognized as a new facet of soft Lewis acid catalysis. Herein, a chiral palladium aqua complex was constructed that enables carbon-hydrogen bonds of indoles to be functionalized efficiently. We embraced a chiral 2,2'-bipyridine as both ligand and hydrogen-bond donor to configure a robust, yet highly Lewis acidic, chiral aqua complex in water. Whereas the enantioselectivity could not be controlled in organic solvents or under solvent-free conditions, the use of aqueous environments allowed the σ-indolylpalladium intermediates to react efficiently in a highly enantioselective manner. This work thus describes a potentially powerful new approach to the transformation of organometallic intermediates in a highly enantioselective manner under mild reaction conditions.
金属结合的水分子最近被认为是软路易斯酸催化的一个新方面。在此,构建了一种手性钯水配合物,它能使吲哚的碳氢键高效官能团化。我们采用手性2,2'-联吡啶作为配体和氢键供体,在水中构建了一种稳定但路易斯酸性很强的手性水配合物。在有机溶剂中或无溶剂条件下无法控制对映选择性,而使用水性环境能使σ-吲哚基钯中间体以高度对映选择性的方式高效反应。因此,这项工作描述了一种在温和反应条件下以高度对映选择性方式转化有机金属中间体的潜在强大新方法。