Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion

Zirconia is one of the most studied ceramic materials due to its outstanding thermal, mechanical and chemical stability; in addition, acidic, basic, oxidizing and reducing surface properties make this oxide suitable for many catalytic processes [1-3]. Depending on the preparation method and thermal...

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Autores principales: Rivera de la Rosa, Javier, Hernández, Araceli, Ledezma Sánchez, Juan José, Rojas, Fernando, Goller, Gülteking
Formato: Artículo
Lenguaje:inglés
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Acceso en línea:http://eprints.uanl.mx/25819/1/209.pdf
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author Rivera de la Rosa, Javier
Hernández, Araceli
Ledezma Sánchez, Juan José
Rojas, Fernando
Goller, Gülteking
author_facet Rivera de la Rosa, Javier
Hernández, Araceli
Ledezma Sánchez, Juan José
Rojas, Fernando
Goller, Gülteking
author_sort Rivera de la Rosa, Javier
collection Repositorio Institucional
description Zirconia is one of the most studied ceramic materials due to its outstanding thermal, mechanical and chemical stability; in addition, acidic, basic, oxidizing and reducing surface properties make this oxide suitable for many catalytic processes [1-3]. Depending on the preparation method and thermal treatment, monoclinic, tetragonal, cubic, or a mixture of these phases can be obtained. The sol-gel method has attracted considerable attention for the preparation of metallic catalysts, since the constituents are mixed in an atomic scale and this generates a uniform distribution of active metals upon the support [4]. The crystalline phase obtained by the sol-gel method can strongly depend on the starting metallic precursor.
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spelling eprints-258192024-10-15T17:45:12Z http://eprints.uanl.mx/25819/ Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion Rivera de la Rosa, Javier Hernández, Araceli Ledezma Sánchez, Juan José Rojas, Fernando Goller, Gülteking QD Química Zirconia is one of the most studied ceramic materials due to its outstanding thermal, mechanical and chemical stability; in addition, acidic, basic, oxidizing and reducing surface properties make this oxide suitable for many catalytic processes [1-3]. Depending on the preparation method and thermal treatment, monoclinic, tetragonal, cubic, or a mixture of these phases can be obtained. The sol-gel method has attracted considerable attention for the preparation of metallic catalysts, since the constituents are mixed in an atomic scale and this generates a uniform distribution of active metals upon the support [4]. The crystalline phase obtained by the sol-gel method can strongly depend on the starting metallic precursor. Article PeerReviewed text en cc_by_nc_nd http://eprints.uanl.mx/25819/1/209.pdf http://eprints.uanl.mx/25819/1.haspreviewThumbnailVersion/209.pdf Rivera de la Rosa, Javier y Hernández, Araceli y Ledezma Sánchez, Juan José y Rojas, Fernando y Goller, Gülteking Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion. Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion.
spellingShingle QD Química
Rivera de la Rosa, Javier
Hernández, Araceli
Ledezma Sánchez, Juan José
Rojas, Fernando
Goller, Gülteking
Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion
thumbnail https://rediab.uanl.mx/themes/sandal5/images/online.png
title Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion
title_full Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion
title_fullStr Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion
title_full_unstemmed Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion
title_short Zirconia doped with La Fe synthesized by sol gel, used in the trichloroethylene catalytic combustion
title_sort zirconia doped with la fe synthesized by sol gel used in the trichloroethylene catalytic combustion
topic QD Química
url http://eprints.uanl.mx/25819/1/209.pdf
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