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1
Visible Light Enables Catalytic Formation of Weak Chemical Bonds with Molecular Hydrogen.
Park, Y., Kim, S., Tian, L., Zhong, H., Scholes, G. D., Chirik, P. J.
Nature Chem., 2021
2
Visible Light-Driven, Iridium-Catalyzed Hydrogen Atom Transfer: Mechanistic Studies, Identification of Intermediates and Catalyst Improvements.
Park, Y.†, Tian, L.†, Kim, S., Pabst, T. P., Kim, J., Scholes, G. D., Chirik, P. J.
JACS Au, 2022
3
Synthesis, Electronic Structure, and Reactivity of a Planar Four-Coordinate, Cobalt-Imido Complex.
Park, Y., Semproni, S. P., Zhong, H., Chirik, P. J.
Angew. Chem. Int. Ed., 2021
4
Harnessing Secondary Coordination Sphere Interactions that Enable the Selective Amidation of Benzylic C−H Bonds.
Jung, H., Schrader, M., Kim, D., Baik, M.-H.*, Park, Y.*, Chang, S.*
J. Am. Chem. Soc., 2019
5
Asymmetric Formation of γ-Lactams via C–H Amidation Enabled by Chiral Hydrogen-Bond-Donor Catalysts.
Park, Y., Chang, S.
Nature Catal., 2019
6
Selective Formation of γ-Lactams via C–H Amidation Enabled by Tailored Iridium Catalysts.
Hong, S. Y.†, Park, Y.†, Hwang, Y., Kim, Y., Baik, M.-H., Chang, S.
Science, 2018
7
Delineating Physical Organic Parameters in Site-Selective C–H Functionalization of Indoles
Kim, Y.†, Park, Y.†, Chang, S.
ACS Cent. Sci., 2018
8
Quantifying Structural Effects of Amino Acid Ligands in Pd(II)-Catalyzed Enantioselective C–H Functionalization Reactions.
Park, Y., Niemeyer, Z. L., Yu, J.-Q., Sigman, M. S.
Organometallics, 2018
9
Transition Metal-Catalyzed C–H Amination: Scope, Mechanism and Applications.
Park, Y., Kim, Y., Chang, S.
Chem. Rev., 2017
10
Why is the Ir(III)-Mediated Amido Transfer So Much Faster than the Rh(III)-Mediated Reaction? A Combined Experimental and Computational Study.
Park, Y., Heo, J., Baik, M.-H., Chang, S.
J. Am. Chem. Soc., 2016
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