Hybrid Au-Si microspheres produced by laser ablation in liquid (LAL) for temperature-feedback optical nano-sensing and anti-counterfeit labeling
Stanislav Gurbatov, Vladislav Puzikov, Dmitry Storozhenko and, Evgeny Modin, Eugeny Mitsai, Artem Cherepakhin, Aleksandr Shevlyagin, and Andrey V. Gerasimenko, Sergei A. Kulinich, Aleksandr Kuchmizhak

TL;DR
This paper presents a novel two-step laser ablation synthesis of Au-Si microspheres that combine plasmonic and nanophotonic properties for temperature-feedback optical sensing and anti-counterfeit labeling.
Contribution
It introduces a lithography-free, scalable method to create hybrid Au-Si nanostructures with unique functionalities for sensing and security applications.
Findings
Enables efficient light-to-heat conversion in Au-Si microspheres.
Demonstrates single-particle SERS sensing with temperature feedback.
Utilizes nanomaterial randomness for anti-counterfeiting labels.
Abstract
Recent progress in hybrid nanomaterials composed of dissimilar constituents permitted to improve performance and functionality of novel devices developed for optoelectronics, catalysis, medical diagnostic and sensing. However, the rational combination of such contrasting materials as noble metals and semiconductors within individual hybrid nanostructures a ready-to-use and lithography-free fabrication approach is still a standing challenge. Here, we report on a two-step synthesis of Au-Si microspheres generated by laser ablation of silicon in isopropanol followed by laser irradiation of the produced Si nanoparticles in presence of HAuCl. Thermal reduction of [AuCl] species to metallic gold phase, along with its subsequent mixing with silicon under laser irradiation creates a nanostructured material with a unique composition and morphology revealed by electron…
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Taxonomy
TopicsLaser-Ablation Synthesis of Nanoparticles · Gold and Silver Nanoparticles Synthesis and Applications · Quantum Dots Synthesis And Properties
