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Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating

The Ni/Y(2)O(3) catalyst showed high catalytic activity. Based on this, the aim of this study was to create Ni/Y(2)O(3) nanocomposites powder with two innovative technologies, Ultrasonic Spray Pyrolysis (USP) and lyophilisation. In the USP process, thermal decomposition of the generated aerosols in...

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Autores principales: Švarc, Tilen, Stopić, Srećko, Jelen, Žiga, Zadravec, Matej, Friedrich, Bernd, Rudolf, Rebeka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028117/
https://www.ncbi.nlm.nih.gov/pubmed/35454550
http://dx.doi.org/10.3390/ma15082856
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author Švarc, Tilen
Stopić, Srećko
Jelen, Žiga
Zadravec, Matej
Friedrich, Bernd
Rudolf, Rebeka
author_facet Švarc, Tilen
Stopić, Srećko
Jelen, Žiga
Zadravec, Matej
Friedrich, Bernd
Rudolf, Rebeka
author_sort Švarc, Tilen
collection PubMed
description The Ni/Y(2)O(3) catalyst showed high catalytic activity. Based on this, the aim of this study was to create Ni/Y(2)O(3) nanocomposites powder with two innovative technologies, Ultrasonic Spray Pyrolysis (USP) and lyophilisation. In the USP process, thermal decomposition of the generated aerosols in an N(2)/H(2) reduction atmosphere caused a complete decomposition of the nickel (II) nitrate to elemental Ni, which became trapped on the formed Y(2)O(3) nanoparticles. The Ni/Y(2)O(3) nanocomposite particles were captured via gas washing in an aqueous solution of polyvinylpyrrolidone (PVP) in collection bottles. PVP was chosen for its ability to stabilise nano-suspensions and as an effective cryoprotectant. Consequently, there was no loss or agglomeration of Ni/Y(2)O(3) nanocomposite material during the lyophilisation process. The Ni/Y(2)O(3) nanocomposite powder was analysed using ICP-MS, SEM-EDX, and XPS, which showed the impact of different precursor concentrations on the final Ni/Y(2)O(3) nanocomposite particle composition. In a final step, highly concentrated Ni/Y(2)O(3) nanocomposite ink (Ni/Y(2)O(3) > 0.140 g/mL) and test coatings from this ink were prepared by applying them on a white matte photo paper sheet. The reflection curve of the prepared Ni/Y(2)O(3) nanocomposite coating showed a local maximum at 440 nm with a value of 39% reflection. Given that Ni is located on the surface of the Ni/Y(2)O(3) nanocomposite in the elemental state and according to the identified properties, tests of the catalytic properties of this coating will be performed in the future.
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spelling pubmed-90281172022-04-23 Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating Švarc, Tilen Stopić, Srećko Jelen, Žiga Zadravec, Matej Friedrich, Bernd Rudolf, Rebeka Materials (Basel) Article The Ni/Y(2)O(3) catalyst showed high catalytic activity. Based on this, the aim of this study was to create Ni/Y(2)O(3) nanocomposites powder with two innovative technologies, Ultrasonic Spray Pyrolysis (USP) and lyophilisation. In the USP process, thermal decomposition of the generated aerosols in an N(2)/H(2) reduction atmosphere caused a complete decomposition of the nickel (II) nitrate to elemental Ni, which became trapped on the formed Y(2)O(3) nanoparticles. The Ni/Y(2)O(3) nanocomposite particles were captured via gas washing in an aqueous solution of polyvinylpyrrolidone (PVP) in collection bottles. PVP was chosen for its ability to stabilise nano-suspensions and as an effective cryoprotectant. Consequently, there was no loss or agglomeration of Ni/Y(2)O(3) nanocomposite material during the lyophilisation process. The Ni/Y(2)O(3) nanocomposite powder was analysed using ICP-MS, SEM-EDX, and XPS, which showed the impact of different precursor concentrations on the final Ni/Y(2)O(3) nanocomposite particle composition. In a final step, highly concentrated Ni/Y(2)O(3) nanocomposite ink (Ni/Y(2)O(3) > 0.140 g/mL) and test coatings from this ink were prepared by applying them on a white matte photo paper sheet. The reflection curve of the prepared Ni/Y(2)O(3) nanocomposite coating showed a local maximum at 440 nm with a value of 39% reflection. Given that Ni is located on the surface of the Ni/Y(2)O(3) nanocomposite in the elemental state and according to the identified properties, tests of the catalytic properties of this coating will be performed in the future. MDPI 2022-04-13 /pmc/articles/PMC9028117/ /pubmed/35454550 http://dx.doi.org/10.3390/ma15082856 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Švarc, Tilen
Stopić, Srećko
Jelen, Žiga
Zadravec, Matej
Friedrich, Bernd
Rudolf, Rebeka
Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating
title Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating
title_full Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating
title_fullStr Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating
title_full_unstemmed Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating
title_short Synthesis of Ni/Y(2)O(3) Nanocomposite through USP and Lyophilisation for Possible Use as Coating
title_sort synthesis of ni/y(2)o(3) nanocomposite through usp and lyophilisation for possible use as coating
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9028117/
https://www.ncbi.nlm.nih.gov/pubmed/35454550
http://dx.doi.org/10.3390/ma15082856
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