"Photon Interaction Frequency Is Essential to Maximize Plasmon-Driven Charge Transfer" - Raman spectra data files and figure data. Collected at the University of Minnesota-Twin Cities Campus between Dec 2024- Jan 2025
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2024-12-06
2025-1-31
2025-1-31
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Frontiera, Renee
rrf@umn.edu
rrf@umn.edu
Abstract
The data includes Raman spectra collected under different excitation conditions (continuous wave and pulsed illumination) for an experimental research study. The data is presented in the paper "Photon Interaction Frequency Is Essential to Maximize Plasmon-Driven Charge Transfer". The upload also includes the data used for the main text figures in the paper. This data was used to draw conclusions about how photon interaction frequency impacts plasmon-driven charge transfer to methyl viologen.
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Data includes 53,321 .csv files and 2 .spe files
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Koble, M. M.; Sarkar, A.; Frontiera, R. R. Photon Interaction Frequency Is Essential to Maximize Plasmon-Driven Charge Transfer. Nano Letters, 2025 25 (44), 15911-15918
https://pubs.acs.org/doi/10.1021/acs.nanolett.5c04287
https://pubs.acs.org/doi/10.1021/acs.nanolett.5c04287
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We acknowledge support from the MRSEC Program of the National Science Foundation under award DMR-2011401.
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Koble, MaKenna; Sarkar, Arghya; Frontiera, Renee. (2025). "Photon Interaction Frequency Is Essential to Maximize Plasmon-Driven Charge Transfer" - Raman spectra data files and figure data. Collected at the University of Minnesota-Twin Cities Campus between Dec 2024- Jan 2025. Retrieved from the Data Repository for the University of Minnesota (DRUM), https://hdl.handle.net/11299/276914.
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