Institute of Chemical Research of Catalonia (ICIQ), Barcelona Institute of Science and Technology, Av. Països Catalans 16, 43007 Tarragona, Spain.
Departament de Química Orgànica i Analítica, Universitat Rovira i Virgili, C/Marcel·lí Domingo s/n, 43007 Tarragona, Spain.
J Am Chem Soc. 2022 Mar 2;144(8):3497-3509. doi: 10.1021/jacs.1c11978. Epub 2022 Feb 9.
A new strategy for enantioselective transition-metal catalysis is presented, wherein a H-bond donor placed on the ligand of a cationic complex allows precise positioning of the chiral counteranion responsible for asymmetric induction. The successful implementation of this paradigm is demonstrated in 5--dig and 6-dig cyclizations of 1,6-enynes, combining an achiral phosphinourea Au(I) chloride complex with a BINOL-derived phosphoramidate Ag(I) salt and thus allowing the first general use of chiral anions in Au(I)-catalyzed reactions of challenging alkyne substrates. Experiments with modified complexes and anions, H NMR titrations, kinetic data, and studies of solvent and nonlinear effects substantiate the key H-bonding interaction at the heart of the catalytic system. This conceptually novel approach, which lies at the intersection of metal catalysis, H-bond organocatalysis, and asymmetric counterion-directed catalysis, provides a blueprint for the development of supramolecularly assembled chiral ligands for metal complexes.
提出了一种新的对映选择性过渡金属催化策略,其中手性抗衡阴离子通过配体上的氢键供体与阳离子配合物精确结合,负责不对称诱导。在手性磷酸脲 Au(I) 配合物与 BINOL 衍生的磷酰胺 Ag(I) 盐结合的情况下,成功地在 1,6-烯炔的 5-位和 6-位环化反应中实施了这一范例,从而允许首次在具有挑战性的炔烃底物的 Au(I) 催化反应中使用手性阴离子。通过与改性配合物和阴离子、H NMR 滴定、动力学数据以及溶剂和非线性效应的研究,证实了催化体系核心处关键氢键相互作用。这种概念新颖的方法位于金属催化、氢键有机催化和不对称抗衡阴离子定向催化的交叉点,为金属配合物中超分子组装手性配体的发展提供了蓝图。