Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.

Autores
Rivoira , Lorena Paola; Martínez , María Laura; Falcón , Horacio; Beltramone , Andrea Raquel; Campos , Martín; Fierro, José; Tartaj, Pedro; Martínez , María Laura
Año de publicación
2017
Idioma
inglés
Tipo de recurso
artículo
Estado
versión aceptada
Descripción
Mesocrystals (basically nanostructures showing alignment of nanocrystals well beyond crystal size) are attracting considerable attention for modeling and optimiza- (heterogeneous catalysis), only those mesocrystals with excellent textural properties are expected to fulfill their potential. This is especially true for oxidative desulfuration of dibenzothiophenes (hard to desulfurize organosulfur com pounds found in fossil fuels). Here, we probe the catalytic activity of anatases for the oxidative desulfuration of dibenzothiophenes under atmospheric pressure and mild temperatures. Specifically, for this study, we have taken advantage of the high stability of the (101) anatase surface to obtain (pores around 3−4 nm and surface areas around 200 m2 /g). Ultimately, this stability has allowed us to compare the catalytic activity of anatasesthat expose a high number of aligned single crystal-like surfaces while differing in controllable surface essential for oxidative desulfuration and that both elimination of sulfates and good textural properties significantly improve the catalytic activity. Furthermore, the most active mesocrystals have been used to model the catalytic reaction in three-(oil− the oil to the solvent phase partially limits the oxidative process and to estimate an apparent activation energy for the oxidative establish that (101) anatase mesocrystals with excellent textural propertiesshow adequate stability to withstand several post treatments without losing their initial mesocrystalline character and therefore could serve as modelsfor catalytic processes different from the one studied here.
Fil: Rivoira, Lorena Paola. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Martínez, María Laura. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Falcón, Horacio. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Beltramone, Andrea Raquel. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Campos, Martín. Universidad Cantoblanco. Instituto de Catálisis y Petroleoquímica. Energy and Sustainable Chemistry Group; España.
Fil: Fierro, José. Universidad Cantoblanco. Instituto de Catálisis y Petroleoquímica. Energy and Sustainable Chemistry Group; España.
Fil: Tartaj, Pedro. Universidad Cantoblanco. Instituto de Ciencia de Materiales; España.
Materia
Catalitic activity
Porous TiO2(101)
Anatase
Nivel de accesibilidad
acceso abierto
Condiciones de uso
Attribution-NonCommercial-NoDerivatives 4.0 International
Repositorio
Repositorio Institucional Abierto (UTN)
Institución
Universidad Tecnológica Nacional
OAI Identificador
oai:ria.utn.edu.ar:20.500.12272/12838

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network_acronym_str RIAUTN
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network_name_str Repositorio Institucional Abierto (UTN)
spelling Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.Rivoira , Lorena PaolaMartínez , María LauraFalcón , HoracioBeltramone , Andrea RaquelCampos , MartínFierro, JoséTartaj, PedroMartínez , María LauraCatalitic activityPorous TiO2(101)AnataseMesocrystals (basically nanostructures showing alignment of nanocrystals well beyond crystal size) are attracting considerable attention for modeling and optimiza- (heterogeneous catalysis), only those mesocrystals with excellent textural properties are expected to fulfill their potential. This is especially true for oxidative desulfuration of dibenzothiophenes (hard to desulfurize organosulfur com pounds found in fossil fuels). Here, we probe the catalytic activity of anatases for the oxidative desulfuration of dibenzothiophenes under atmospheric pressure and mild temperatures. Specifically, for this study, we have taken advantage of the high stability of the (101) anatase surface to obtain (pores around 3−4 nm and surface areas around 200 m2 /g). Ultimately, this stability has allowed us to compare the catalytic activity of anatasesthat expose a high number of aligned single crystal-like surfaces while differing in controllable surface essential for oxidative desulfuration and that both elimination of sulfates and good textural properties significantly improve the catalytic activity. Furthermore, the most active mesocrystals have been used to model the catalytic reaction in three-(oil− the oil to the solvent phase partially limits the oxidative process and to estimate an apparent activation energy for the oxidative establish that (101) anatase mesocrystals with excellent textural propertiesshow adequate stability to withstand several post treatments without losing their initial mesocrystalline character and therefore could serve as modelsfor catalytic processes different from the one studied here.Fil: Rivoira, Lorena Paola. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.Fil: Martínez, María Laura. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.Fil: Falcón, Horacio. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.Fil: Beltramone, Andrea Raquel. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.Fil: Campos, Martín. Universidad Cantoblanco. Instituto de Catálisis y Petroleoquímica. Energy and Sustainable Chemistry Group; España.Fil: Fierro, José. Universidad Cantoblanco. Instituto de Catálisis y Petroleoquímica. Energy and Sustainable Chemistry Group; España.Fil: Tartaj, Pedro. Universidad Cantoblanco. Instituto de Ciencia de Materiales; España.Universidad Tecnológica Nacional.2025-04-30T19:39:39Z2017info:eu-repo/semantics/articleinfo:eu-repo/semantics/acceptedVersionhttp://purl.org/coar/resource_type/c_6501info:ar-repo/semantics/articulopdfapplication/pdfAmerican Chemical Society,2017.https://hdl.handle.net/20.500.12272/12838enginfo:eu-repo/semantics/openAccessAttribution-NonCommercial-NoDerivatives 4.0 Internationalhttp://creativecommons.org/licenses/by-nc-nd/4.0/Rivoiraq, Lorena Paola; Martínez, María Laura; Falcón, Horacio; Beltramone, Andrea Raquel; Campos, Martín; Fierrro, José; Tartaj, Pedro.https://creativecommons.org/licenses/by-nc-nd/4.0/reponame:Repositorio Institucional Abierto (UTN)instname:Universidad Tecnológica Nacional2026-09-24T12:46:51Zoai:ria.utn.edu.ar:20.500.12272/12838instacron:UTNInstitucionalhttp://ria.utn.edu.ar/Universidad públicaNo correspondehttp://ria.utn.edu.ar/oaigestionria@rec.utn.edu.ar; fsuarez@rec.utn.edu.arArgentinaNo correspondeNo correspondeNo correspondeopendoar:a2026-09-24 12:46:53.419Repositorio Institucional Abierto (UTN) - Universidad Tecnológica Nacionalfalse
dc.title.none.fl_str_mv Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
title Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
spellingShingle Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
Rivoira , Lorena Paola
Catalitic activity
Porous TiO2(101)
Anatase
title_short Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
title_full Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
title_fullStr Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
title_full_unstemmed Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
title_sort Probing the Catalytic Activity of Sulfate-Derived Pristine and Post-Teatred Porous TiO2(101) Anatase Mesocrystals by the Oxidative Desulfurization of Dibenzothiophenes.
dc.creator.none.fl_str_mv Rivoira , Lorena Paola
Martínez , María Laura
Falcón , Horacio
Beltramone , Andrea Raquel
Campos , Martín
Fierro, José
Tartaj, Pedro
Martínez , María Laura
author Rivoira , Lorena Paola
author_facet Rivoira , Lorena Paola
Martínez , María Laura
Falcón , Horacio
Beltramone , Andrea Raquel
Campos , Martín
Fierro, José
Tartaj, Pedro
author_role author
author2 Martínez , María Laura
Falcón , Horacio
Beltramone , Andrea Raquel
Campos , Martín
Fierro, José
Tartaj, Pedro
author2_role author
author
author
author
author
author
dc.subject.none.fl_str_mv Catalitic activity
Porous TiO2(101)
Anatase
topic Catalitic activity
Porous TiO2(101)
Anatase
dc.description.none.fl_txt_mv Mesocrystals (basically nanostructures showing alignment of nanocrystals well beyond crystal size) are attracting considerable attention for modeling and optimiza- (heterogeneous catalysis), only those mesocrystals with excellent textural properties are expected to fulfill their potential. This is especially true for oxidative desulfuration of dibenzothiophenes (hard to desulfurize organosulfur com pounds found in fossil fuels). Here, we probe the catalytic activity of anatases for the oxidative desulfuration of dibenzothiophenes under atmospheric pressure and mild temperatures. Specifically, for this study, we have taken advantage of the high stability of the (101) anatase surface to obtain (pores around 3−4 nm and surface areas around 200 m2 /g). Ultimately, this stability has allowed us to compare the catalytic activity of anatasesthat expose a high number of aligned single crystal-like surfaces while differing in controllable surface essential for oxidative desulfuration and that both elimination of sulfates and good textural properties significantly improve the catalytic activity. Furthermore, the most active mesocrystals have been used to model the catalytic reaction in three-(oil− the oil to the solvent phase partially limits the oxidative process and to estimate an apparent activation energy for the oxidative establish that (101) anatase mesocrystals with excellent textural propertiesshow adequate stability to withstand several post treatments without losing their initial mesocrystalline character and therefore could serve as modelsfor catalytic processes different from the one studied here.
Fil: Rivoira, Lorena Paola. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Martínez, María Laura. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Falcón, Horacio. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Beltramone, Andrea Raquel. Universidad Tecnológica Nacional. Facultad Regional Córdoba. Centro de Investigación Nanociencia y Nanotecnología; Argentina.
Fil: Campos, Martín. Universidad Cantoblanco. Instituto de Catálisis y Petroleoquímica. Energy and Sustainable Chemistry Group; España.
Fil: Fierro, José. Universidad Cantoblanco. Instituto de Catálisis y Petroleoquímica. Energy and Sustainable Chemistry Group; España.
Fil: Tartaj, Pedro. Universidad Cantoblanco. Instituto de Ciencia de Materiales; España.
description Mesocrystals (basically nanostructures showing alignment of nanocrystals well beyond crystal size) are attracting considerable attention for modeling and optimiza- (heterogeneous catalysis), only those mesocrystals with excellent textural properties are expected to fulfill their potential. This is especially true for oxidative desulfuration of dibenzothiophenes (hard to desulfurize organosulfur com pounds found in fossil fuels). Here, we probe the catalytic activity of anatases for the oxidative desulfuration of dibenzothiophenes under atmospheric pressure and mild temperatures. Specifically, for this study, we have taken advantage of the high stability of the (101) anatase surface to obtain (pores around 3−4 nm and surface areas around 200 m2 /g). Ultimately, this stability has allowed us to compare the catalytic activity of anatasesthat expose a high number of aligned single crystal-like surfaces while differing in controllable surface essential for oxidative desulfuration and that both elimination of sulfates and good textural properties significantly improve the catalytic activity. Furthermore, the most active mesocrystals have been used to model the catalytic reaction in three-(oil− the oil to the solvent phase partially limits the oxidative process and to estimate an apparent activation energy for the oxidative establish that (101) anatase mesocrystals with excellent textural propertiesshow adequate stability to withstand several post treatments without losing their initial mesocrystalline character and therefore could serve as modelsfor catalytic processes different from the one studied here.
publishDate 2017
dc.date.none.fl_str_mv 2017
2025-04-30T19:39:39Z
dc.type.none.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/acceptedVersion
http://purl.org/coar/resource_type/c_6501
info:ar-repo/semantics/articulo
format article
status_str acceptedVersion
dc.identifier.none.fl_str_mv American Chemical Society,2017.
https://hdl.handle.net/20.500.12272/12838
identifier_str_mv American Chemical Society,2017.
url https://hdl.handle.net/20.500.12272/12838
dc.language.none.fl_str_mv eng
language eng
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
Attribution-NonCommercial-NoDerivatives 4.0 International
http://creativecommons.org/licenses/by-nc-nd/4.0/
Rivoiraq, Lorena Paola; Martínez, María Laura; Falcón, Horacio; Beltramone, Andrea Raquel; Campos, Martín; Fierrro, José; Tartaj, Pedro.
https://creativecommons.org/licenses/by-nc-nd/4.0/
eu_rights_str_mv openAccess
rights_invalid_str_mv Attribution-NonCommercial-NoDerivatives 4.0 International
http://creativecommons.org/licenses/by-nc-nd/4.0/
Rivoiraq, Lorena Paola; Martínez, María Laura; Falcón, Horacio; Beltramone, Andrea Raquel; Campos, Martín; Fierrro, José; Tartaj, Pedro.
https://creativecommons.org/licenses/by-nc-nd/4.0/
dc.format.none.fl_str_mv pdf
application/pdf
dc.publisher.none.fl_str_mv Universidad Tecnológica Nacional.
publisher.none.fl_str_mv Universidad Tecnológica Nacional.
dc.source.none.fl_str_mv reponame:Repositorio Institucional Abierto (UTN)
instname:Universidad Tecnológica Nacional
reponame_str Repositorio Institucional Abierto (UTN)
collection Repositorio Institucional Abierto (UTN)
instname_str Universidad Tecnológica Nacional
repository.name.fl_str_mv Repositorio Institucional Abierto (UTN) - Universidad Tecnológica Nacional
repository.mail.fl_str_mv gestionria@rec.utn.edu.ar; fsuarez@rec.utn.edu.ar
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