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One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation

One-pot hydrothermal preparation of Ca(3)Cr(2)Si(3)O(12) uvarovite nanoparticles under alkaline conditions was investigated for the first time. The experimental parameters selected for the study considered the concentration of the KOH solvent solution (0.01 to 5.0 M), the agitation of the autoclave...

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Autores principales: Rendón-Angeles, Juan Carlos, Matamoros-Veloza, Zully, Rodríguez-Galicia, Jose Luis, Seong, Gimyeong, Yanagisawa, Kazumichi, Tamayo, Aitana, Rubio, Juan, Anaya-Chavira, Lluvia A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7922063/
https://www.ncbi.nlm.nih.gov/pubmed/33670738
http://dx.doi.org/10.3390/nano11020521
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author Rendón-Angeles, Juan Carlos
Matamoros-Veloza, Zully
Rodríguez-Galicia, Jose Luis
Seong, Gimyeong
Yanagisawa, Kazumichi
Tamayo, Aitana
Rubio, Juan
Anaya-Chavira, Lluvia A.
author_facet Rendón-Angeles, Juan Carlos
Matamoros-Veloza, Zully
Rodríguez-Galicia, Jose Luis
Seong, Gimyeong
Yanagisawa, Kazumichi
Tamayo, Aitana
Rubio, Juan
Anaya-Chavira, Lluvia A.
author_sort Rendón-Angeles, Juan Carlos
collection PubMed
description One-pot hydrothermal preparation of Ca(3)Cr(2)Si(3)O(12) uvarovite nanoparticles under alkaline conditions was investigated for the first time. The experimental parameters selected for the study considered the concentration of the KOH solvent solution (0.01 to 5.0 M), the agitation of the autoclave (50 rpm), and the nominal content of Si(4+) (2.2–3.0 mole). Fine uvarovite particles were synthesised at 200 °C after a 3 h interval in a highly concentrated 5.0 M KOH solution. The crystallisation of single-phase Ca(3)Cr(2)Si(3)O(12) particles proceeded free of by-products via a one-pot process involving a single-step reaction. KOH solutions below 2.5 M and water hindered the crystallisation of the Ca(3)Cr(2)Si(3)O(12) particles. The hydrothermal treatments carried out with stirring (50 rpm) and non-stirring triggered the crystallisation of irregular anhedral particles with average sizes of 8.05 and 12.25 nm, respectively. These particles spontaneously assembled into popcorn-shaped agglomerates with sizes varying from 66 to 156 nm. All the powders prepared by the present method exhibited CIE-L*a*b* values that correspond to the Victoria green colour spectral space and have a high near infrared reflectance property. The particle size and structural crystallinity are factors affecting the Victoria pigment optical properties, such as CIE-L*a*b* values, green tonality, and near-infrared reflectance.
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spelling pubmed-79220632021-03-03 One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation Rendón-Angeles, Juan Carlos Matamoros-Veloza, Zully Rodríguez-Galicia, Jose Luis Seong, Gimyeong Yanagisawa, Kazumichi Tamayo, Aitana Rubio, Juan Anaya-Chavira, Lluvia A. Nanomaterials (Basel) Article One-pot hydrothermal preparation of Ca(3)Cr(2)Si(3)O(12) uvarovite nanoparticles under alkaline conditions was investigated for the first time. The experimental parameters selected for the study considered the concentration of the KOH solvent solution (0.01 to 5.0 M), the agitation of the autoclave (50 rpm), and the nominal content of Si(4+) (2.2–3.0 mole). Fine uvarovite particles were synthesised at 200 °C after a 3 h interval in a highly concentrated 5.0 M KOH solution. The crystallisation of single-phase Ca(3)Cr(2)Si(3)O(12) particles proceeded free of by-products via a one-pot process involving a single-step reaction. KOH solutions below 2.5 M and water hindered the crystallisation of the Ca(3)Cr(2)Si(3)O(12) particles. The hydrothermal treatments carried out with stirring (50 rpm) and non-stirring triggered the crystallisation of irregular anhedral particles with average sizes of 8.05 and 12.25 nm, respectively. These particles spontaneously assembled into popcorn-shaped agglomerates with sizes varying from 66 to 156 nm. All the powders prepared by the present method exhibited CIE-L*a*b* values that correspond to the Victoria green colour spectral space and have a high near infrared reflectance property. The particle size and structural crystallinity are factors affecting the Victoria pigment optical properties, such as CIE-L*a*b* values, green tonality, and near-infrared reflectance. MDPI 2021-02-18 /pmc/articles/PMC7922063/ /pubmed/33670738 http://dx.doi.org/10.3390/nano11020521 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rendón-Angeles, Juan Carlos
Matamoros-Veloza, Zully
Rodríguez-Galicia, Jose Luis
Seong, Gimyeong
Yanagisawa, Kazumichi
Tamayo, Aitana
Rubio, Juan
Anaya-Chavira, Lluvia A.
One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation
title One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation
title_full One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation
title_fullStr One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation
title_full_unstemmed One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation
title_short One-Pot Hydrothermal Synthesis of Victoria Green (Ca(3)Cr(2)Si(3)O(12)) Nanoparticles in Alkaline Fluids and Its Colour Hue Characterisation
title_sort one-pot hydrothermal synthesis of victoria green (ca(3)cr(2)si(3)o(12)) nanoparticles in alkaline fluids and its colour hue characterisation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7922063/
https://www.ncbi.nlm.nih.gov/pubmed/33670738
http://dx.doi.org/10.3390/nano11020521
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