Herein we report the first transition metal‐catalyzed approach to the enantioenriched synthesis of cyclic sulfonimidamides relying on commercially available palladium catalysts and ligands. High‐throughput experimentation (HTE) was employed to identify the optimal catalyst system and solvent. The method is applied to a variety of saturated and unsaturated rings and exhibits the highest selectivity for 2‐substituted allyl electrophiles. The products are further elaborated to complex, tricyclic scaffolds. DFT experiments presented herein highlight the key ligand substrate interactions leading to the high levels of enantioselectivity.
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Abstract -
Gutierrez, David_A ; Toth‐Williams, Garrett ; Laconsay, Croix_J ; Yasuda, Michael ; Fettinger, James_C ; Di_Maso, Michael_J ; Shaw, Jared_T ( , Angewandte Chemie)
Abstract Herein we report the first transition metal‐catalyzed approach to the enantioenriched synthesis of cyclic sulfonimidamides relying on commercially available palladium catalysts and ligands. High‐throughput experimentation (HTE) was employed to identify the optimal catalyst system and solvent. The method is applied to a variety of saturated and unsaturated rings and exhibits the highest selectivity for 2‐substituted allyl electrophiles. The products are further elaborated to complex, tricyclic scaffolds. DFT experiments presented herein highlight the key ligand substrate interactions leading to the high levels of enantioselectivity.
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Bergstrom, Benjamin D. ; Toth-Williams, Garrett ; Lo, Anna ; Toman, Jeffrey W. ; Fettinger, James. C. ; Shaw, Jared T. ( , The Journal of Organic Chemistry)
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Lo, Anna ; Gutierrez, David A. ; Toth-Williams, Garrett ; Fettinger, James C. ; Shaw, Jared T. ( , The Journal of Organic Chemistry)