Publication detail
Next-generation photocatalytic system: Ga2O3-modified Ga Nanoislands on graphene for H2 production
BARTOŠÍK, M. MACH, J. EDELMANNOVÁ M. F. KOČÍ, K.
English title
Next-generation photocatalytic system: Ga2O3-modified Ga Nanoislands on graphene for H2 production
Type
journal article in Web of Science
Language
en
Original abstract
Study investigates Ga2O3/Ga on Graphene/SiO2/Si, prepared via temperature-controlled growth of Ga, for photocatalytic hydrogen generation, marking the first exploration of this system for such purpose. Thin surface ultra-wide band gap Ga2O3 layer effectively photoemits electron-hole pairs under UVC and the metallic Ga cores enhance electric field separating charge carriers by formation of localized surface plasmon (LSP) resonances. These effects increase hydrogen yields. Computational analysis of LSP-induced electric field enhancement quantitatively supports proposed fundamental mechanism underlying sample's photoactivity. The most active photocatalyst (Ga-M) with medium-size Ga particles (radius 14 nm) exhibited ten thousand times higher activity per gram than commercial TiO2.
English abstract
Study investigates Ga2O3/Ga on Graphene/SiO2/Si, prepared via temperature-controlled growth of Ga, for photocatalytic hydrogen generation, marking the first exploration of this system for such purpose. Thin surface ultra-wide band gap Ga2O3 layer effectively photoemits electron-hole pairs under UVC and the metallic Ga cores enhance electric field separating charge carriers by formation of localized surface plasmon (LSP) resonances. These effects increase hydrogen yields. Computational analysis of LSP-induced electric field enhancement quantitatively supports proposed fundamental mechanism underlying sample's photoactivity. The most active photocatalyst (Ga-M) with medium-size Ga particles (radius 14 nm) exhibited ten thousand times higher activity per gram than commercial TiO2.
Keywords in English
Photocatalysis; Hydrogen generation; Ga material; Water splitting
Released
24.05.2024
Publisher
ELSEVIER
Location
AMSTERDAM
ISSN
2950-6492
Volume
191
Number
206944
Pages from–to
1–8
Pages count
8
BIBTEX
@article{BUT197232,
author="Miroslav {Bartošík} and Jindřich {Mach},
title="Next-generation photocatalytic system: Ga2O3-modified Ga Nanoislands on graphene for H2 production",
year="2024",
volume="191",
number="206944",
month="May",
pages="1--8",
publisher="ELSEVIER",
address="AMSTERDAM",
issn="2950-6492"
}