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June 4, 20260 citationsOpen Access

An Enantioselective Alkene Aminoarylation to form Chiral Indolines via Electrostatically-Directed Palladium Catalysis

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MKMaximilian KadarauchPJPaul JirschHDH Erik Diepers

Key Points

  • This research aims to develop a method for asymmetric aminoarylation using electrostatically-directed palladium catalysis.
  • Utilized chiral sulfonated ligand sSPhos for palladium catalysis.
  • Conducted aminoarylation reactions of ortho-allyl anilines with various aryl bromides.
  • Assessed the enantioselectivity of the resulting 2-benzylindolines.
  • Achieved high enantioselectivity in the production of 2-benzylindolines across diverse substrates.
  • Identified key trends in the electronic interactions between coupling partners affecting enantioselectivity.
  • Demonstrated tuning of the sulfonamide protecting group to enhance substrate generality.

Abstract

Most design strategies in asymmetric transition metal catalysis invoke repulsive interactions between ligand and substrate. Yet those that incorporate attractive interactions can offer advantages such as rate acceleration and greater generality, due to the fundamentally different mode of operation. Here we deploy electrostatically-directed Pd catalysis using the chiral sulfonated ligand sSPhos to realize an asymmetric aminoarylation of ortho-allyl anilines under mild conditions. A wide variety of substituted aryl bromides and anilines provide access to 2-benzylindolines with high enantioselectivity. Our study uncovers trends relating the electronics of both coupling partners to ee. These trends allowed tuning of the sulfonamide protecting group to enable good results across a broader range of substrates.

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Cite This Study

Kadarauch et al. (2026) studied this question.

synapsesocial.com/papers/6a2116fad499ed480b16fcdahttps://doi.org/10.17863/cam.130604
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