Gerard Michael Carroll
Affiliations: | National Renewable Energy Laboratory, Golden, CO, United States |
Area:
Electrochemical energy storage and catalysisGoogle:
"Gerard Carroll"Mean distance: (not calculated yet)
Parents
Sign in to add mentorDaniel R. Gamelin | grad student | 2010-2016 | University of Washington |
Nathan R. Neale | post-doc | 2017-2020 | National Renewable Energy Laboratory |
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Publications
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Pach GF, Carroll GM, Zhang H, et al. (2020) Modulating donor-acceptor transition energies in phosphorus-boron co-doped silicon nanocrystals via X- and L-type ligands. Faraday Discussions |
Pace NA, Korovina NV, Clikeman TT, et al. (2019) Slow charge transfer from pentacene triplet states at the Marcus optimum. Nature Chemistry |
Lu H, Carroll GM, Neale NR, et al. (2019) Infrared Quantum Dots: Progress, Challenges, and Opportunities. Acs Nano |
Carroll GM, Zhang H, Dunklin JR, et al. (2019) Unique interfacial thermodynamics of few-layer 2D MoS2 for (photo)electrochemical catalysis Energy & Environmental Science. 12: 1648-1656 |
Lu H, Carroll GM, Chen X, et al. (2018) n-Type PbSe Quantum Dots via Post-Synthetic Indium Doping. Journal of the American Chemical Society |
Carroll GM, Limpens R, Neale NR. (2018) Tuning Confinement in Colloidal Silicon Nanocrystals with Saturated Surface Ligands. Nano Letters |
Kroupa DM, Arias DH, Carroll GM, et al. (2018) Control of Energy Flow Dynamics between Tetracene Ligands and PbS Quantum Dots by Size Tuning and Ligand Coverage. Nano Letters |
Tsui EY, Carroll GM, Miller B, et al. (2017) Extremely Slow Spontaneous Electron Trapping in Photodoped n-Type CdSe Nanocrystals. Chemistry of Materials : a Publication of the American Chemical Society. 29: 3754-3762 |
Anderson NC, Carroll GM, Pekarek RT, et al. (2017) Silicon Photoelectrode Thermodynamics and Hydrogen Evolution Kinetics Measured by Intensity-Modulated High-Frequency Resistivity Impedance Spectroscopy. The Journal of Physical Chemistry Letters |
Carroll GM, Brozek CK, Hartstein KH, et al. (2016) Potentiometric Measurements of Semiconductor Nanocrystal Redox Potentials. Journal of the American Chemical Society |