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High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels

Clinobisvanite (monoclinic scheelite BiVO(4), S.G.I2/b) has garnered interest as a wide-band semiconductor with photocatalyst activity, as a high NIR reflectance material for camouflage and cool pigments and as a photoanode for PEC application from seawater. BiVO(4) exists in four polymorphs: orthor...

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Autores principales: Monrós, Guillermo, Llusar, Mario, Badenes, José A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10223507/
https://www.ncbi.nlm.nih.gov/pubmed/37241350
http://dx.doi.org/10.3390/ma16103722
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author Monrós, Guillermo
Llusar, Mario
Badenes, José A.
author_facet Monrós, Guillermo
Llusar, Mario
Badenes, José A.
author_sort Monrós, Guillermo
collection PubMed
description Clinobisvanite (monoclinic scheelite BiVO(4), S.G.I2/b) has garnered interest as a wide-band semiconductor with photocatalyst activity, as a high NIR reflectance material for camouflage and cool pigments and as a photoanode for PEC application from seawater. BiVO(4) exists in four polymorphs: orthorhombic, zircon-tetragonal, monoclinic, and scheelite-tetragonal structures. In these crystal structures, V is coordinated by four O atoms in tetrahedral coordination and each Bi is coordinated to eight O atoms from eight different VO(4) tetrahedral units. The synthesis and characterization of doped bismuth vanadate with Ca and Cr are studied using gel methods (coprecipitated and citrate metal–organic gels), which are compared with the ceramic route by means of the UV–vis–NIR spectroscopy of diffuse reflectance studies, band gap measurement, photocatalytic activity on Orange II and its relation with the chemical crystallography analyzed by the XRD, SEM-EDX and TEM-SAD techniques. The preparation of bismuth vanadate-based materials doped with calcium or chromium with various functionalities is addressed (a) as pigments for paints and for glazes in the chrome samples, with a color gradation from turquoise to black, depending on whether the synthesis is by the conventional ceramic route or by means of citrate gels, respectively; (b) with high NIR reflectance values that make them suitable as fresh pigments, to refresh the walls or roofs of buildings colored with them; and (c) with photocatalytic activity.
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spelling pubmed-102235072023-05-28 High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels Monrós, Guillermo Llusar, Mario Badenes, José A. Materials (Basel) Article Clinobisvanite (monoclinic scheelite BiVO(4), S.G.I2/b) has garnered interest as a wide-band semiconductor with photocatalyst activity, as a high NIR reflectance material for camouflage and cool pigments and as a photoanode for PEC application from seawater. BiVO(4) exists in four polymorphs: orthorhombic, zircon-tetragonal, monoclinic, and scheelite-tetragonal structures. In these crystal structures, V is coordinated by four O atoms in tetrahedral coordination and each Bi is coordinated to eight O atoms from eight different VO(4) tetrahedral units. The synthesis and characterization of doped bismuth vanadate with Ca and Cr are studied using gel methods (coprecipitated and citrate metal–organic gels), which are compared with the ceramic route by means of the UV–vis–NIR spectroscopy of diffuse reflectance studies, band gap measurement, photocatalytic activity on Orange II and its relation with the chemical crystallography analyzed by the XRD, SEM-EDX and TEM-SAD techniques. The preparation of bismuth vanadate-based materials doped with calcium or chromium with various functionalities is addressed (a) as pigments for paints and for glazes in the chrome samples, with a color gradation from turquoise to black, depending on whether the synthesis is by the conventional ceramic route or by means of citrate gels, respectively; (b) with high NIR reflectance values that make them suitable as fresh pigments, to refresh the walls or roofs of buildings colored with them; and (c) with photocatalytic activity. MDPI 2023-05-14 /pmc/articles/PMC10223507/ /pubmed/37241350 http://dx.doi.org/10.3390/ma16103722 Text en © 2023 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
Monrós, Guillermo
Llusar, Mario
Badenes, José A.
High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels
title High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels
title_full High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels
title_fullStr High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels
title_full_unstemmed High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels
title_short High NIR Reflectance and Photocatalytic Ceramic Pigments Based on M-Doped Clinobisvanite BiVO(4) (M = Ca, Cr) from Gels
title_sort high nir reflectance and photocatalytic ceramic pigments based on m-doped clinobisvanite bivo(4) (m = ca, cr) from gels
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10223507/
https://www.ncbi.nlm.nih.gov/pubmed/37241350
http://dx.doi.org/10.3390/ma16103722
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