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Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications

[Image: see text] In this study, we present a thermoplasmonic transparent ink based on a colloidal dispersion of indium tin oxide (ITO) nanoparticles, which can offer several advantages as anti-counterfeiting technology. The custom ink could be directly printed on several substrates, and it is trans...

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Autores principales: Mazzotta, Arianna, Gabbani, Alessio, Carlotti, Marco, Ruggeri, Marina, Fantechi, Elvira, Ottomaniello, Andrea, Pineider, Francesco, Pucci, Andrea, Mattoli, Virgilio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9354021/
https://www.ncbi.nlm.nih.gov/pubmed/35867887
http://dx.doi.org/10.1021/acsami.2c10864
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author Mazzotta, Arianna
Gabbani, Alessio
Carlotti, Marco
Ruggeri, Marina
Fantechi, Elvira
Ottomaniello, Andrea
Pineider, Francesco
Pucci, Andrea
Mattoli, Virgilio
author_facet Mazzotta, Arianna
Gabbani, Alessio
Carlotti, Marco
Ruggeri, Marina
Fantechi, Elvira
Ottomaniello, Andrea
Pineider, Francesco
Pucci, Andrea
Mattoli, Virgilio
author_sort Mazzotta, Arianna
collection PubMed
description [Image: see text] In this study, we present a thermoplasmonic transparent ink based on a colloidal dispersion of indium tin oxide (ITO) nanoparticles, which can offer several advantages as anti-counterfeiting technology. The custom ink could be directly printed on several substrates, and it is transparent under visible light but is able to generate heat by absorption of NIR radiation. Dynamic temperature mapping of the printed motifs was performed by using a thermal camera while irradiating the samples with an IR lamp. The printed samples presented fine features (in the order of 75 μm) and high thermal resolution (of about 250 μm). The findings are supported by thermal finite-element simulations, which also allow us to explore the effect of different substrate characteristics on the thermal readout. Finally, we built a demonstrator comprising a QR Code invisible to the naked eye, which became visible in thermal images under NIR radiation. The high transparency of the printed ink and the high speed of the thermal reading (figures appear/disappear in less than 1 s) offer an extremely promising strategy toward low-cost, scalable production of photothermally active invisible labels.
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spelling pubmed-93540212022-08-06 Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications Mazzotta, Arianna Gabbani, Alessio Carlotti, Marco Ruggeri, Marina Fantechi, Elvira Ottomaniello, Andrea Pineider, Francesco Pucci, Andrea Mattoli, Virgilio ACS Appl Mater Interfaces [Image: see text] In this study, we present a thermoplasmonic transparent ink based on a colloidal dispersion of indium tin oxide (ITO) nanoparticles, which can offer several advantages as anti-counterfeiting technology. The custom ink could be directly printed on several substrates, and it is transparent under visible light but is able to generate heat by absorption of NIR radiation. Dynamic temperature mapping of the printed motifs was performed by using a thermal camera while irradiating the samples with an IR lamp. The printed samples presented fine features (in the order of 75 μm) and high thermal resolution (of about 250 μm). The findings are supported by thermal finite-element simulations, which also allow us to explore the effect of different substrate characteristics on the thermal readout. Finally, we built a demonstrator comprising a QR Code invisible to the naked eye, which became visible in thermal images under NIR radiation. The high transparency of the printed ink and the high speed of the thermal reading (figures appear/disappear in less than 1 s) offer an extremely promising strategy toward low-cost, scalable production of photothermally active invisible labels. American Chemical Society 2022-07-22 2022-08-03 /pmc/articles/PMC9354021/ /pubmed/35867887 http://dx.doi.org/10.1021/acsami.2c10864 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Mazzotta, Arianna
Gabbani, Alessio
Carlotti, Marco
Ruggeri, Marina
Fantechi, Elvira
Ottomaniello, Andrea
Pineider, Francesco
Pucci, Andrea
Mattoli, Virgilio
Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications
title Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications
title_full Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications
title_fullStr Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications
title_full_unstemmed Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications
title_short Invisible Thermoplasmonic Indium Tin Oxide Nanoparticle Ink for Anti-counterfeiting Applications
title_sort invisible thermoplasmonic indium tin oxide nanoparticle ink for anti-counterfeiting applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9354021/
https://www.ncbi.nlm.nih.gov/pubmed/35867887
http://dx.doi.org/10.1021/acsami.2c10864
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