| Literature DB >> 32198953 |
Rui Ning1,2, Hao Zhou1,2, Shi-Xin Nie1,2, Yu-Fei Ao1, De-Xian Wang1,2, Qi-Qiang Wang1,2.
Abstract
The tight binding enabled by tailor-made macrocycles can be manipulated for tuning the catalysis process. In parallel to well-developed crown ether-based cation-binding catalysis, a macrocycle-enabled counteranion trapping strategy is presented for boosting highly efficient and enantioselective catalysis. A set of bis-diarylthiourea macrocycles containing two BINOL moieties were designed and synthesized. They possess a well-confined chiral cavity and strong binding affinities towards disulfonate anions. Caused by the tight binding, just 1 mol % macrocycle in combination with 1 mol % ethanedisulfonic acid can promote excellent conversion and up to 99 % ee in the Friedel-Crafts reaction of indoles with imines. The acid or the macrocycle alone do not afford any reactivity. The high catalytic efficiency and excellent stereocontrol was ascribed to large, complexation-induced acidity enhancement and tight ion-pairing facilitated by cave-like macrocyclic cavity.Entities:
Keywords: anion binding; chiral macrocycles; cooperative asymmetric catalysis; counteranion trapping; supramolecular catalysis
Year: 2020 PMID: 32198953 DOI: 10.1002/anie.202003673
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336