A series of nanostructured MnCeOx catalysts with superior textural and redox properties in comparison to coprecipitated systems was synthesized via the "redox-precipitation" route (Chem. Mater. 2007, 19, 2269). Characterization data prove that the redox-precipitated system consists of uniformly sized (d ? 20 nm) spherical nanoparticles ensuring large surface area (120-260 m2/g) and pore volume (0.5-0.6 cm3/g), and a regular pore size distribution in a wide range of Mn/Ce ratios (1/3 to 3/1). The lack of long-range crystalline order and a homogeneous chemical composition signal that Mn and Ce oxides form composite nanodomains with a molecular dispersion of the active phase. Superior MnOx accessibility, strong MnOx-CeO2 interaction, and higher average oxidation number of both Mn and Ce ions strongly promote the reactive surface oxygen availability and the CO oxidation activity in the range of 323-423 K, also accounting for the better stability of the redox-precipitated system under reaction conditions.

Nanosize effects, physicochemical properties, and catalytic oxidation pattern of the redox-precipitated MnCeOx system

Barbara Fazio;Lorenzo Spadaro
2009

Abstract

A series of nanostructured MnCeOx catalysts with superior textural and redox properties in comparison to coprecipitated systems was synthesized via the "redox-precipitation" route (Chem. Mater. 2007, 19, 2269). Characterization data prove that the redox-precipitated system consists of uniformly sized (d ? 20 nm) spherical nanoparticles ensuring large surface area (120-260 m2/g) and pore volume (0.5-0.6 cm3/g), and a regular pore size distribution in a wide range of Mn/Ce ratios (1/3 to 3/1). The lack of long-range crystalline order and a homogeneous chemical composition signal that Mn and Ce oxides form composite nanodomains with a molecular dispersion of the active phase. Superior MnOx accessibility, strong MnOx-CeO2 interaction, and higher average oxidation number of both Mn and Ce ions strongly promote the reactive surface oxygen availability and the CO oxidation activity in the range of 323-423 K, also accounting for the better stability of the redox-precipitated system under reaction conditions.
2009
Istituto per i Processi Chimico-Fisici - IPCF
Istituto di Tecnologie Avanzate per l'Energia - ITAE
113
7
2822
2829
8
5
info:eu-repo/semantics/article
262
Arena, Francesco; Trunfio, Giuseppe; Fazio, Barbara; Negro, Jacopo; Spadaro, Lorenzo
01 Contributo su Rivista::01.01 Articolo in rivista
reserved
File in questo prodotto:
File Dimensione Formato  
prod_170184-doc_1119.pdf

non disponibili

Descrizione: Nanosize Effects, Physicochemical Properties, And Catalytic Oxidation Pattern of the Redox-Precipitated MnCeOx System
Dimensione 433.67 kB
Formato Adobe PDF
433.67 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/158841
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 46
  • ???jsp.display-item.citation.isi??? 45
social impact