Related Experiment Video
Updated: Jan 16, 2026

Author Spotlight: Tracking Electrochemistry on Single Nanoparticles with Surface-Enhanced Raman Scattering Spectroscopy and Microscopy
Published on: May 12, 2023
Current Density Optimization for SERS Substrates Using Galvanostatically Anodized TiO2 Nanostructures Decorated with
Marcos Luna-Cervantes1, Josué Ismael García-Ramírez1, Julián Hernández-Torres1
1Centro de Investigación en Micro y Nanotecnología, Universidad Veracruzana, Boca del Río 94294, PC, Mexico.
Abstract:
In this work, the effect of the applied current density (J) during galvanostatic anodization of titanium (5-30 mA/cm2) on the TiO2 morphology and its influence on the SERS performance after pulsed silver electrodeposition (5 mA/cm2, 400 cycles, 50 ms ON/250 ms OFF) was evaluated. SEM micrographs showed a transition from nanotubes with scarce nanograss to a dense coverage of nanograss over the surface, which conditioned the formation and distribution of silver nanoparticles and dendrites. Using methylene blue as a probe molecule, the substrate anodized at 15 mA/cm2 exhibited the highest SERS intensity, attributed to the high density of hot spots vertically distributed in the 3D dendrites. The optimized substrate demonstrated detection of methylene blue down to 1 × 10-11 M and reached an analytical enhancement factor of 7 × 107, highlighting its strong performance. These results establish galvanostatic anodization as a novel and effective route for designing reproducible and scalable TiO2/Ag substrates with high SERS response.

