David Charboneau
Affiliations: | 2019- | Chemistry | California Institute of Technology, Pasadena, CA |
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Parents
Sign in to add mentorJared J. Paul | research assistant | 2015 | Villanova |
Nilay Hazari | grad student | 2016-2021 | Yale |
Sarah E. Reisman | post-doc | 2021- | Caltech |
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Publications
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Ware SD, Zhang W, Charboneau DJ, et al. (2023) Electrochemical Preparation of Sm(II) Reagent Facilitated by Weakly Coordinating Anions. Chemistry (Weinheim An Der Bergstrasse, Germany). e202301045 |
Charboneau DJ, Hazari N, Huang H, et al. (2022) Homogeneous Organic Electron Donors in Nickel-Catalyzed Reductive Transformations. The Journal of Organic Chemistry. 87: 7589-7609 |
Reed-Lingenfelter SN, Chen Y, Yarali M, et al. (2022) Compact Super Electron-Donor to Monolayer MoS. Nano Letters |
Deziel AP, Espinosa MR, Pavlovic L, et al. (2022) Ligand and solvent effects on CO insertion into group 10 metal alkyl bonds. Chemical Science. 13: 2391-2404 |
Charboneau DJ, Huang H, Barth EL, et al. (2021) Tunable and Practical Homogeneous Organic Reductants for Cross-Electrophile Coupling. Journal of the American Chemical Society |
Edington SC, Perez EH, Charboneau DJ, et al. (2021) Chemical Reduction of Ni Cyclam and Characterization of Isolated Ni Cyclam with Cryogenic Vibrational Spectroscopy and Inert-Gas-Mediated High-Resolution Mass Spectrometry. The Journal of Physical Chemistry. A |
Charboneau DJ, Barth EL, Hazari N, et al. (2020) A Widely Applicable Dual Catalytic System for Cross-Electrophile Coupling Enabled by Mechanistic Studies. Acs Catalysis. 10: 12642-12656 |
Charboneau DJ, Brudvig GW, Hazari N, et al. (2019) Development of an Improved System for the Carboxylation of Aryl Halides through Mechanistic Studies. Acs Catalysis. 9: 3228-3241 |
Beromi MM, Banerjee G, Brudvig GW, et al. (2018) Modifications to the Aryl Group of dppf-Ligated Ni ‑Aryl Precatalysts: Impact on Speciation and Catalytic Activity in Suzuki-Miyaura Coupling Reactions. Organometallics. 37: 3943-3955 |
Espinosa MR, Charboneau DJ, Garcia de Oliveira A, et al. (2018) Controlling Selectivity in the Hydroboration of Carbon Dioxide to the Formic Acid, Formaldehyde, and Methanol Oxidation Levels Acs Catalysis. 9: 301-314 |