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Gap-Mode Surface-Enhanced Raman Scattering (SERS) Substrate Preparation

Gap-Mode Surface-Enhanced Raman Scattering (SERS) Substrate Preparation

Analyzing the Heterogeneous Performance of Single Nanoparticles with Electrochemical Methods

Article DOI: 10.3791/200173-v 02:45 min May 12th, 2023
May 12th, 2023


Tracking Electrochemistry Single Nanoparticles Surface-enhanced Raman Scattering Spectroscopy Microscopy Light Matter Interactions Electrical Energy Interfacial Chemical Transformations Nanoscale Research Local Environments Reaction Intermediates Selectivity In Electric Catalysis Ensemble Average Measurements Catalyst Attributes Measurement Averaging Reduction Measurement Sensitivity Individual Molecules In Catalyst Reactive Sites Electrochemical Techniques Chemical Information Electrode Surface Species Vibrational Spectroscopy Readout Correlations Between Electrochemical Processes And Molecular Changes Measurement Resolution Space And Time Boundaries Single-molecule Level Analysis
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