Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita

Recently, clay has been accepted as excellent adsorbents, catalyst, fillers in industry. The wide usefulness of bentonite is essentially as a result of its high specific surface area, high chemical and mechanical stabilities, and a variety of surface and structural properties. Nickel and molybdenum...

Descripción completa

Detalles Bibliográficos
Autores principales: Escobar, Beatriz, lbarra, Sara, Reyes, Adriana, Verde, Ysmael, Barbosa, Romeli, Valenzuela, Ana, Melo , José
Formato: Artículo
Lenguaje:español
Publicado: Universidad Autónoma de Nuevo León 2014
Materias:
Acceso en línea:https://quimicahoy.uanl.mx/index.php/r/article/view/218
_version_ 1824326913339949056
author Escobar, Beatriz
lbarra, Sara
Reyes, Adriana
Verde, Ysmael
Barbosa, Romeli
Valenzuela, Ana
Melo , José
author_facet Escobar, Beatriz
lbarra, Sara
Reyes, Adriana
Verde, Ysmael
Barbosa, Romeli
Valenzuela, Ana
Melo , José
author_sort Escobar, Beatriz
collection Artículos de Revistas UANL
description Recently, clay has been accepted as excellent adsorbents, catalyst, fillers in industry. The wide usefulness of bentonite is essentially as a result of its high specific surface area, high chemical and mechanical stabilities, and a variety of surface and structural properties. Nickel and molybdenum nanoparticles with particle size distribution ranging between 30-50 nm were synthesized by chemical reduction of ions using nickel nitrate hexahydrate (Ni(NO3)6.6H2O) and ammonium molybdate tetrahydrate (NH4)6Mo7O24.4H2O) in methanol solution, respectively. The process for reducing Pt nanoparticles was carried out in presence of NaBH4, Poly(N-vinylpyrrolidone) was used as protecting agent of the obtained particles. The synthesis process was performed at room temperature. The colloidal dispersions of Ni and M were supported on bentonite by impregnation method, and then were dried at around l00ºC until the solution was completely evaporated. The anchoring of Ni and Mo nanoparticles on the bentonite surface was carried out by a thermal process in a tubular furnace adapted with a quartz tube, where samples were annealed at 400ºC under nitrogen atmosphere for 30 min with a flow rate of 50 ml min-1. The obtained samples were chacterized using X-ray diffractometer (XRD), scanning electron microscope (SEM) and X-ray energy dispersive spectrormeter (EDS). In X-rays analysis for Ni sample was possible to observe peaks of metallic Ni and formation of NiO2, where as for molybdenum appeared diffraction peaks corresponding to the phases of Mo and MoO3. Through SEM waS possible to observe the morphology of the sample and Incorporation of the metal nanoparticles of Ni and Mo, Impregnated on the support. The characterization also reveals the well disperse of these obtained Ni and Mo nanoparticles supported on the external surface of clay with roughly spherical morphology and mean diameter of 30 nm. Finally, using the EDS technique was possible to estimate the actual load on bentonite catalysts.
first_indexed 2025-02-05T21:50:14Z
format Article
id quimicahoy-article-218
institution UANL
language spa
last_indexed 2025-02-05T21:50:14Z
physical Quimica Hoy; Vol. 4 No. 3 (2014): Julio-Septiembre 2014; 21- 36
Quimica Hoy; Vol. 4 Núm. 3 (2014): Julio-Septiembre 2014; 21- 36
2007-1183
publishDate 2014
publisher Universidad Autónoma de Nuevo León
record_format ojs
spelling quimicahoy-article-2182021-10-29T11:17:46Z Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita Escobar, Beatriz lbarra, Sara Reyes, Adriana Verde, Ysmael Barbosa, Romeli Valenzuela, Ana Melo , José nanoparticles nickel molybdenum bentonite chemical reduction Recently, clay has been accepted as excellent adsorbents, catalyst, fillers in industry. The wide usefulness of bentonite is essentially as a result of its high specific surface area, high chemical and mechanical stabilities, and a variety of surface and structural properties. Nickel and molybdenum nanoparticles with particle size distribution ranging between 30-50 nm were synthesized by chemical reduction of ions using nickel nitrate hexahydrate (Ni(NO3)6.6H2O) and ammonium molybdate tetrahydrate (NH4)6Mo7O24.4H2O) in methanol solution, respectively. The process for reducing Pt nanoparticles was carried out in presence of NaBH4, Poly(N-vinylpyrrolidone) was used as protecting agent of the obtained particles. The synthesis process was performed at room temperature. The colloidal dispersions of Ni and M were supported on bentonite by impregnation method, and then were dried at around l00ºC until the solution was completely evaporated. The anchoring of Ni and Mo nanoparticles on the bentonite surface was carried out by a thermal process in a tubular furnace adapted with a quartz tube, where samples were annealed at 400ºC under nitrogen atmosphere for 30 min with a flow rate of 50 ml min-1. The obtained samples were chacterized using X-ray diffractometer (XRD), scanning electron microscope (SEM) and X-ray energy dispersive spectrormeter (EDS). In X-rays analysis for Ni sample was possible to observe peaks of metallic Ni and formation of NiO2, where as for molybdenum appeared diffraction peaks corresponding to the phases of Mo and MoO3. Through SEM waS possible to observe the morphology of the sample and Incorporation of the metal nanoparticles of Ni and Mo, Impregnated on the support. The characterization also reveals the well disperse of these obtained Ni and Mo nanoparticles supported on the external surface of clay with roughly spherical morphology and mean diameter of 30 nm. Finally, using the EDS technique was possible to estimate the actual load on bentonite catalysts. Universidad Autónoma de Nuevo León 2014-09-30 info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion Peer review articles Articulos evaluados por pares application/pdf https://quimicahoy.uanl.mx/index.php/r/article/view/218 10.29105/qh4.3-218 Quimica Hoy; Vol. 4 No. 3 (2014): Julio-Septiembre 2014; 21- 36 Quimica Hoy; Vol. 4 Núm. 3 (2014): Julio-Septiembre 2014; 21- 36 2007-1183 spa https://quimicahoy.uanl.mx/index.php/r/article/view/218/184 Derechos de autor 2014 Beatriz Escobar, Sara lbarra, Adriana Reyes, Ysmael Verde, Romeli Barbosa, Ana Valenzuela, José Melo https://creativecommons.org/licenses/by/4.0
spellingShingle nanoparticles
nickel
molybdenum
bentonite
chemical reduction
Escobar, Beatriz
lbarra, Sara
Reyes, Adriana
Verde, Ysmael
Barbosa, Romeli
Valenzuela, Ana
Melo , José
Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita
thumbnail https://rediab.uanl.mx/themes/sandal5/images/article.gif
title Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita
title_full Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita
title_fullStr Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita
title_full_unstemmed Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita
title_short Síntesis y caracterización de materiales nanoestructurados de Ni y Mo depositados sobre bentonita
title_sort sintesis y caracterizacion de materiales nanoestructurados de ni y mo depositados sobre bentonita
topic nanoparticles
nickel
molybdenum
bentonite
chemical reduction
topic_facet nanoparticles
nickel
molybdenum
bentonite
chemical reduction
url https://quimicahoy.uanl.mx/index.php/r/article/view/218
work_keys_str_mv AT escobarbeatriz sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita
AT lbarrasara sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita
AT reyesadriana sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita
AT verdeysmael sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita
AT barbosaromeli sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita
AT valenzuelaana sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita
AT melojose sintesisycaracterizaciondematerialesnanoestructuradosdeniymodepositadossobrebentonita