Schreyer Lucas, Properzi Roberta, List Benjamin
Max-Planck-Institut für Kohlenforschung, Kaiser-Wilhelm-Platz 1, 45470, Mülheim an der Ruhr, Germany.
Angew Chem Int Ed Engl. 2019 Sep 9;58(37):12761-12777. doi: 10.1002/anie.201900932. Epub 2019 Jul 26.
High acidity and structural confinement are pivotal elements in asymmetric acid catalysis. The recently introduced imidodiphosphorimidate (IDPi) Brønsted acids have met with remarkable success in combining those features, acting as powerful Brønsted acid catalysts and "silylium" Lewis acid precatalysts in numerous thus far inaccessible transformations. Substrates as challenging to activate as simple olefins were readily transformed, ketones were employed as acceptors in aldolizations allowing sub-ppm level catalysis, whereas enolates of the smallest donor aldehyde, acetaldehyde, did not polymerize but selectively added a single time to a variety of acceptor aldehydes.
高酸度和结构限制是不对称酸催化中的关键要素。最近引入的亚氨基二磷酸亚胺酯(IDPi)布朗斯特酸在结合这些特性方面取得了显著成功,在许多迄今为止难以实现的转化中,它们作为强大的布朗斯特酸催化剂和“硅鎓”路易斯酸前催化剂发挥作用。像简单烯烃这样难以活化的底物很容易发生转化,酮在羟醛缩合反应中用作受体,实现了亚ppm级别的催化,而最小的供体醛(乙醛)的烯醇盐不会发生聚合,而是选择性地单次加成到多种受体醛上。