Optical Properties of TiO2@Ag Nanowires and Nanospheres
รหัสดีโอไอ
Creator Thananchai DASRI
Title Optical Properties of TiO2@Ag Nanowires and Nanospheres
Contributor Panuwat CHAIYACHATE, Sasiporn AUDTARAT, Panadda CHAREE, Artit CHINGSUNGNOEN
Publisher Metallurgy and Materials Science Research Institute Chulalongkorn University
Publication Year 2563
Journal Title Journal of Metals Materials and Minerals
Journal Vol. 30
Journal No. 3
Page no. 30-37
Keyword TiO2@Ag core-shell nanostructure, Absorption property, Localized surface plasmon resonance
URL Website https://ojs.materialsconnex.com/index.php/jmmm/article/view/679
Website title Optical properties of TiO 2 @Ag nanowires and nanospheres | Dasri | Journal of Metals, Materials and Minerals
ISSN 8576149
Abstract Nanoparticles (NPs) with nonmetallic cores and metallic shells (such as Au, Ag, and Cu) can exhibit improve absorption ef?ciency due to localized surface plasmon resonance (LSPR), charge density oscillations at the surfaces of these core-shell composite nanoparticles. In this study, the effect of the geometry of TiO2@Ag core-shell composite nanoparticles on their optical absorption properties was theoretically illustrated in the wavelength ranges between the visible and infrared light regions of electromagnetic radiation. These nanostructures were modeled by varying the TiO2 core and Ag shell radii of the composite nanospheres and nanowires. The results indicate that varying the TiO2 core radius and Ag shell thickness can be used to tune the absorption ef?ciency of these materials from the UV region to the visible or infrared regions of the electromagnetic spectrum. An increase in the absorption ef?ciency with greater core radii was observed. The absorption efficiency peaks of core-shell nanospheres or nanowires increased with the shell radius. Theoretical modeling based on these results suggest that this nanomaterial can be effectively utilized so that its optical absorption properties can be tuned. These properties could help to synthesize TiO2@Ag core-shell composite NPs for use in environmental applications such as treating contaminated water and in novel future devices.
Metallurgy and Materials Science Research Institute, Chulalongkorn University ​

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