Between Dec 22, 2025 and Jan 5, 2026, items can be submitted to the UDC and DRUM, but will not be processed until after the break. Staff will not be available to answer email during this period, and will not be able to provide DOIs for datasets until after Jan 5. If you are in need of a DOI during this period, consider Figshare, Zenodo, Open Science Framework, Harvard Dataverse or OpenICPSR.

"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

Loading...
Thumbnail Image

Persistent link to this item

Statistics
View Statistics

Collection period

2024-12-06
2025-1-31

Date completed

Date updated

Time period coverage

Geographic coverage

Source information

Journal Title

Journal ISSN

Volume Title

Published Date

Author Contact

Frontiera, Renee
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.

Description

Data includes 53,321 .csv files and 2 .spe files

Referenced by

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

Related to

Replaces

item.page.isreplacedby

License

Publisher

Funding information

We acknowledge support from the MRSEC Program of the National Science Foundation under award DMR-2011401.

item.page.sponsorshipfunderid

item.page.sponsorshipfundingagency

item.page.sponsorshipgrant

Previously Published Citation

Other identifiers

Suggested citation

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.

Content distributed via the University Digital Conservancy may be subject to additional license and use restrictions applied by the depositor. By using these files, users agree to the Terms of Use. Materials in the UDC may contain content that is disturbing and/or harmful. For more information, please see our statement on harmful content in digital repositories.