Vanderbilt University Post-Doctoral Researcher (2025-2026)
연구업적
[6] Delgutte, L.*; Hua, Y.*; Lee, J.*; Lugo, A.; Iyengar, A.; Kim, D., Overcoming the Barrier to Intermolecular Alkoxy Radical Reactivity: Proton-Coupled Electron Transfer-Mediated Alkene Hydroetherification. J. Am. Chem. Soc. 2026, 148 (17), 18540–18548
*These authors contributed equally.
[5] Yang, S.; Lee, J.; Kim H. K.; Lee G.; Ha M. W.; Pavankumar K.; Kim M.-h.; Park, H.-g., Highly Enantioselective Synthesis of γ-Carboxy-β-amino Acids via Desymmetric Alcoholysis of 3-Aminoglutaric Anhydrides. Org. Lett. 2025, 27 (15), 3988–3993.
[4] Gi, M.; Oh, D.; Yang, S.; Lee, J.; Jung, S. H.; Baek, J. H.; Ha, M. W.; Lee, G.; Park, H.-g., Enantioselective Michael addition of 3-hydroxy-2-pyridone to nitroolefins using cinchona-derived bifunctional organocatalysts. Org. Biomol. Chem. 2024, 22 (34), 7017-7023.
[3] Oh, D.; Lee, J.; Yang, S.; Jung, S. H.; Kim, M.; Lee, G.; Park, H.-g., Enantioselective Synthesis of (R)-Sitagliptin via Phase-Transfer Catalytic aza-Michael Addition. ACS omega, 2024, 9 (13), 15328-15338.
[2] Lee, G.; Lee, J.-H.; Lee, J.; Ha, M. W.; Kim, M.-h.; Hong, S.; Park, H.-g., Asymmetric epoxidation of enones: effect of surfactants, radical scavengers and morphology of catalysts on reaction rates, chemical yields and enantioselectivities in phase-transfer catalysis. Organic Chemistry Frontiers, 2022, 9 (18), 4902-4909.
[1] Lee, J.; Ban, J. W.; Kim, J.; Yang, S.; Lee, G.; Dhorma, L. P.; Kim, M. H.; Ha, M. W.; Hong, S.; Park, H.-g., Asymmetric Phase-Transfer Catalytic aza-Michael Addition to Cyclic Enone: Highly Enantioselective and Diastereoselective Synthesis of Cyclic 1,3-Aminoalcohols. Org. Lett., 2022, 24 (8), 1647-1651
수행과제
연구분야
• Synthetic Organic Chemistry & Methodology Development