Artículo
Active species identification in Zn and Mn-based materials for application in alcohol oxidation reactions
Luggren, Pablo Jorge
; Duarte, Hernán Antonio
; Zelin, Juan
; Sad, Maria Eugenia
; Diez, Veronica Karina
; Di Cosimo, Juana Isabel
Fecha de publicación:
03/2023
Editorial:
Elsevier Science
Revista:
Materials Science and Engineering B: Solid State Materials for Advanced Technology
ISSN:
0921-5107
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Surface and bulk properties and catalytic performance during benzaldehyde synthesis of inexpensive Zn modified-MnCO3 catalysts (xZnMn), prepared by impregnation method and covering a wide range of Zn loadings (1.0 wt% Zn < x < 22.6 wt% Zn) were deeply investigated for the first time. XRD, TPN2 (temperature-programmed decompositions in N2) and XPS characterization showed that different crystalline phases containing Mn and/or Zn species are present in xZnMn. In these phases Mn oxidation state changes from 2+ toward higher values (3+ and 4+) as Zn content increases entailing the transformation of MnCO3 to ZnMn2O4 spinel and MnOx oxides. During benzyl alcohol oxidation at mild reaction conditions using oxygen, the highest benzaldehyde yield (∼70 %) was obtained on 15.4ZnMn sample after 6 h of reaction. The superior catalytic performance of the 15.4ZnMn catalyst was attributed to a synergistic interaction of both metals.
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Articulos(INCAPE)
Articulos de INST.DE INVEST.EN CATALISIS Y PETROQUIMICA "ING. JOSE MIGUEL PARERA"
Articulos de INST.DE INVEST.EN CATALISIS Y PETROQUIMICA "ING. JOSE MIGUEL PARERA"
Citación
Luggren, Pablo Jorge; Duarte, Hernán Antonio; Zelin, Juan; Sad, Maria Eugenia; Diez, Veronica Karina; et al.; Active species identification in Zn and Mn-based materials for application in alcohol oxidation reactions; Elsevier Science; Materials Science and Engineering B: Solid State Materials for Advanced Technology; 289; 3-2023; 1-12
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