Plasmons Enhancing Sub-Bandgap Photoconductivity in TiO2 Nanoparticles Film

The coupling between sub-bandgap defect states and surface plasmon resonances in Au nanoparticles and its effects on the photoconductivity performance of TiO2 are investigated in both the ultraviolet (UV) and visible spectrum. Incorporating a 2 nm gold nanoparticle layer in the photodetector device...

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Veröffentlicht in:ACS omega 2024-03, Vol.9 (9), p.10169-10176
Hauptverfasser: Ibrahem, Mohammed A., Verrelli, Emanuele, Adawi, Ali M., Bouillard, Jean-Sebastien G., O’Neill, Mary
Format: Artikel
Sprache:eng
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Zusammenfassung:The coupling between sub-bandgap defect states and surface plasmon resonances in Au nanoparticles and its effects on the photoconductivity performance of TiO2 are investigated in both the ultraviolet (UV) and visible spectrum. Incorporating a 2 nm gold nanoparticle layer in the photodetector device architecture creates additional trapping pathways, resulting in a faster current decay under UV illumination and a significant enhancement in the visible photocurrent of TiO2, with an 8-fold enhancement of the defects-related photocurrent. We show that hot electron injection (HEI) and plasmonic resonance energy transfer (PRET) jointly contribute to the observed photoconductivity enhancement. In addition to shedding light on the below-band-edge photoconductivity of TiO2, our work provides insight into new methods to probe and examine the surface defects of metal oxide semiconductors using plasmonic resonances.
ISSN:2470-1343
2470-1343
DOI:10.1021/acsomega.3c06932