Published April 2, 2025 | Version v1
Dataset Open

Data Set Accompanying: Comparison of Gap-Enhanced Raman Tags and Nanoparticle Aggregates with Polarization Dependent Super-Resolution Spectral SERS Imaging

  • 1. ROR icon The Ohio State University
  • 2. Center for Materials Physics in San SebastiánCenter for Materials Physics in San Sebastián (CSIC-UPV/EHU)
  • 3. ROR icon Donostia International Physics Center

Description

Raw data files and extracted data used in the published manuscript.  

Coordinates of particles analyzed in tiff stacks:

BPA1, coordinates: y = 335:343, x = 280

BPA2, coordinates: y = 49:59, x = 250

BPA3, coordinates: y = 121:131, x = 170

BPG1, coordinates: y = 325:336, x = 270

BPG2 coordinates: y = 152:162, x = 220

BPG3 coordinates: y = 365:374, x = 200

Files

Fig 2 BPA1 raw data.zip

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Additional details

Funding

U.S. National Science Foundation
The Role of Plasmon Initiated Electron Transfer in Enhanced Raman CHE- 2107791
Basque Government
Q-NANOFOTONIKA - Nanofotónica para la identificación y desarrollo de nuevos procesos y aplicaciones en espectroscopías moleculares, microscopía de campo cercano y tecnologías cuánticas con fotones IT1526-22
Basque Government
Quantum interactions between molecular vibrations and plasmonic excitations at optical frequencies in metallic nanostructures. IKUR Strategy
Ministerio de Ciencia, Innovación y Universidades
QuEVEDO-Quantum treatment of the interaction of molecular Excitons and Vibrations with optical nanoresonators to address single-Emitter fluorescence, ultrafast electron Dynamics and molecular Optomechanics PID2022-139579NB-I00