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The first highly atroposelective construction of N-N axially chiral indole scaffolds was established via a new strategy of de novo ring formation. This strategy makes use of the organocatalytic asymmetric Paal-Knorr reaction of well-designed N-aminoindoles with 1,4-diketones, thus affording N-pyrrolylindoles in high yields and with excellent atroposelectivities (up to 98 % yield, 96 % ee). In addition, this strategy is applicable for the atroposelective synthesis of N-N axially chiral bispyrroles (up to 98 % yield, 97 % ee). More importantly, such N-N axially chiral heterocycles can be converted into chiral organocatalysts with applications in asymmetric catalysis, and some molecules display potent anticancer activity. This work not only provides a new strategy for the atroposelective synthesis of N-N axially chiral molecules but also offers new members of the N-N atropisomer family with promising applications in synthetic and medicinal chemistry.
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Chen et al. (Wed,) studied this question.
synapsesocial.com/papers/69dedbc740ea065679559a77 — DOI: https://doi.org/10.1002/anie.202116829
Ke‐Wei Chen
Jiangsu Normal University
Zhi‐Han Chen
Jiangsu Normal University
Shuang Yang
Xuzhou University of Technology
Angewandte Chemie International Edition
Jiangsu Normal University
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