RGB LED-induced fast photochemical synthesis and photothermal effect of silver nanoprisms

A critical challenge in nanomaterials science is the development of high-throughput, reproducible, and economically viable syntheses capable of yielding nanoparticles with well-defined characteristics. Addressing the poor reproducibility of conventional methods is essential for transitioning nanomaterials from the laboratory to widespread application. Photochemical techniques provide a versatile platform for synthesizing functional plasmonic nanomaterials. The utility of silver nanoprisms (SNP) stems from their plasmonic response, which provides both a dielectric-environment-sensitive local surface plasmon resonance (LSPR) for sensing and efficient light-to-heat conversion for photothermal applications. Here, we present a time-efficient, RGB-LED-assisted photochemical synthesis that enables a one-pot procedure for three types of SNP, with wavelength-selective control over particle size and LSPR. We developed a compact RGB-LED photoreactor and a reproducible protocol that enables the comfortable synthesis of three distinct types of SNP with different LSPR maxima (481 ± 2.04 nm, 617 ± 4.84 nm, and 712 ± 7.37 nm) within 40–240 min. The photothermal response of the resulting SNP was investigated under irradiation from the synthesis LEDs. Our integrated strategy provides a straightforward and adaptable platform for generating plasmonic nanostructures of choice.

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Publication Details

Journal
Materials Today Chemistry
Published
2026-09-12
DOI
https://doi.org/10.1016/j.mtchem.2026.104011
Primary Topic
Gold and Silver Nanoparticles Synthesis and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

RGB LED-induced fast photochemical synthesis and photothermal effect of silver nanoprisms

Polina M. Ivantcova, Maxim P. Nikitin, Anton P. Chebotarev, Iuliia P. Chebotareva
Materials Today Chemistry
Gold and Silver Nanoparticles Synthesis and Applications
article

RGB LED-induced fast photochemical synthesis and photothermal effect of silver nanoprisms

Polina M. Ivantcova, Maxim P. Nikitin, Anton P. Chebotarev, Iuliia P. Chebotareva
article en

Abstract

A critical challenge in nanomaterials science is the development of high-throughput, reproducible, and economically viable syntheses capable of yielding nanoparticles with well-defined characteristics. Addressing the poor reproducibility of conventional methods is essential for transitioning nanomaterials from the laboratory to widespread application. Photochemical techniques provide a versatile platform for synthesizing functional plasmonic nanomaterials. The utility of silver nanoprisms (SNP) stems from their plasmonic response, which provides both a dielectric-environment-sensitive local surface plasmon resonance (LSPR) for sensing and efficient light-to-heat conversion for photothermal applications. Here, we present a time-efficient, RGB-LED-assisted photochemical synthesis that enables a one-pot procedure for three types of SNP, with wavelength-selective control over particle size and LSPR. We developed a compact RGB-LED photoreactor and a reproducible protocol that enables the comfortable synthesis of three distinct types of SNP with different LSPR maxima (481 ± 2.04 nm, 617 ± 4.84 nm, and 712 ± 7.37 nm) within 40–240 min. The photothermal response of the resulting SNP was investigated under irradiation from the synthesis LEDs. Our integrated strategy provides a straightforward and adaptable platform for generating plasmonic nanostructures of choice.

Materials Today ChemistryVol. 57
Sirius University of Science and Technology (RU), Platov South-Russian State Polytechnic University (RU), National Medical Research Center for Obstetrics, Gynecology and Perinatology named after Academician V.I.Kulakov of the Ministry of Healthcare of the Russian Federation (RU)
Ministry of Education and Science of the Russian Federation, Russian Science Foundation
Openalex Percentile: Top 28%
Gold and Silver Nanoparticles Synthesis and Applications
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