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Single-atom dopants in plasmonic nanocatalysts

Mesoscale and Nanoscale Physics 2023-01-20 v1 Materials Science Chemical Physics Optics

Abstract

Bimetallic nanostructures combining plasmonic and catalytic metals are promising for tailoring and enhancing plasmonic hot-carrier generation utilized in plasmonic catalysis. In this work, we study the plasmonic hot-carrier generation in noble metal nanoparticles (Ag, Au, Cu) with single-atom dopants (Ag, Au, Cu, Pd, Pt) with first-principles time-dependent density-functional theory calculations. Our results show that the local hot-carrier generation at the dopant atom is significantly altered by the dopant element while the plasmonic response of the nanoparticle as a whole is not significantly affected. In particular, hot holes at the dopant atom originate from the discrete d-electron states of the dopant. The energies of these d-electron states, and hence those of the hot holes, depend on the dopant element, which opens up the possibility to tune hot-carrier generation with suitable dopants.

Cite

@article{arxiv.2301.08217,
  title  = {Single-atom dopants in plasmonic nanocatalysts},
  author = {Daniel Sorvisto and Patrick Rinke and Tuomas P. Rossi},
  journal= {arXiv preprint arXiv:2301.08217},
  year   = {2023}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-28T08:15:36.819Z