Magnetoplasmonics nanoparticles encompass in a single nano-entityall the rich science and promising applications of the plasmonics and magneticnanoworlds. The difficult liaison and a certain incompatibility between plasmonicsand magnetic phenomena, due to the different chemical-physical origins andsupportingmaterials, are overcome thanks to the design and synthesis of novel nanostructures. The variations of properties, interactions and synergies of both phenomena and materials demonstrate how rich and surprising the matter is at nanoscale and the promising applications. In fact, we show how not only light and magnetism can interplay but also other phenomena like forces, heat, electric field and chemical interactions, between others, can show synergism. Magnetoplasmonic systems are excellent benchmark materials to develop and investigate multi-responsive multifunctional nanosystems that now are required in an increasing number of technologies, such as biomedicine, pharmacy, catalysis, optoelectronics and data storage.

Magneto-Plasmonic Nanoparticles

C de Julián Fernández
;
2021

Abstract

Magnetoplasmonics nanoparticles encompass in a single nano-entityall the rich science and promising applications of the plasmonics and magneticnanoworlds. The difficult liaison and a certain incompatibility between plasmonicsand magnetic phenomena, due to the different chemical-physical origins andsupportingmaterials, are overcome thanks to the design and synthesis of novel nanostructures. The variations of properties, interactions and synergies of both phenomena and materials demonstrate how rich and surprising the matter is at nanoscale and the promising applications. In fact, we show how not only light and magnetism can interplay but also other phenomena like forces, heat, electric field and chemical interactions, between others, can show synergism. Magnetoplasmonic systems are excellent benchmark materials to develop and investigate multi-responsive multifunctional nanosystems that now are required in an increasing number of technologies, such as biomedicine, pharmacy, catalysis, optoelectronics and data storage.
2021
Istituto dei Materiali per l'Elettronica ed il Magnetismo - IMEM
978-3-030-60472-1
magnetic nanoparticles, plasmonic nanoparticles, magneto-plasmonic nanoparticles, hybrid materials, multifunctional materials
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/423776
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