Photothermally heated colloidal synthesis of nanoparticles driven by silica-encapsulated plasmonic heat sources

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作者
Aritra Biswas
Nir Lemcoff
Ofir Shelonchik
Doron Yesodi
Elad Yehezkel
Ella Yonit Finestone
Alexander Upcher
Yossi Weizmann
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[1] Ben-Gurion University of the Negev,Department of Chemistry
[2] Ben-Gurion University of the Negev,Ilse Katz Institute for Nanotechnology Science
[3] Ben-Gurion University of the Negev,Goldman Sonnenfeldt School of Sustainability and Climate Change
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Using photons to drive chemical reactions has become an increasingly important field of chemistry. Plasmonic materials can provide a means to introduce the energy necessary for nucleation and growth of nanoparticles by efficiently converting visible and infrared light to heat. Moreover, the formation of crystalline nanoparticles has yet to be included in the extensive list of plasmonic photothermal processes. Herein, we establish a light-assisted colloidal synthesis of iron oxide, silver, and palladium nanoparticles by utilizing silica-encapsulated gold bipyramids as plasmonic heat sources. Our work shows that the silica surface chemistry and localized thermal hotspot generated by the plasmonic nanoparticles play crucial roles in the formation mechanism, enabling nucleation and growth at temperatures considerably lower than conventional heating. Additionally, the photothermal method is extended to anisotropic geometries and can be applied to obtain intricate assemblies inaccessible otherwise. This study enables photothermally heated nanoparticle synthesis in solution through the plasmonic effect and demonstrates the potential of this methodology.
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