Synthesis and Characterization of Ru‐Loaded Anodized Aluminum Oxide for Hydrogenation Catalysis

Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as‐synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorpti...

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Vydáno v:ChemistryOpen (Weinheim) Ročník 8; číslo 4; s. 532 - 538
Hlavní autoři: Vandekerkhove, Annelies, Negahdar, Leila, Glas, Daan, Stassen, Ivo, Matveev, Serguei, Meeldijk, Johannes D., Meirer, Florian, De Vos, Dirk E., Weckhuysen, Bert M.
Médium: Journal Article
Jazyk:angličtina
Vydáno: Germany John Wiley & Sons, Inc 01.04.2019
John Wiley and Sons Inc
Wiley-VCH
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ISSN:2191-1363, 2191-1363
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Abstract Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as‐synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF‐STEM‐EDX. The Ru−AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal. Ru ready for this? Anodized aluminum oxide (AAO) platelets are synthesized and thoroughly characterized. The platelets are loaded with Ru and the presence of Ru inside the pores is clearly evidenced via HAADF‐STEM‐EDX. Hydrogenations of butanal and toluene are successfully carried out with the Ru−AAO catalyst, which can be easily removed from the reaction mixture and fast diffusion of substrate and products through the mesopores is ensured.
AbstractList Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as‐synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF‐STEM‐EDX. The Ru−AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal.
Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as‐synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF‐STEM‐EDX. The Ru−AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal. Ru ready for this? Anodized aluminum oxide (AAO) platelets are synthesized and thoroughly characterized. The platelets are loaded with Ru and the presence of Ru inside the pores is clearly evidenced via HAADF‐STEM‐EDX. Hydrogenations of butanal and toluene are successfully carried out with the Ru−AAO catalyst, which can be easily removed from the reaction mixture and fast diffusion of substrate and products through the mesopores is ensured.
Abstract Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as‐synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF‐STEM‐EDX. The Ru−AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal.
Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as-synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF-STEM-EDX. The Ru-AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal.Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as-synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF-STEM-EDX. The Ru-AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal.
Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis of the as-synthesized AAOs reveal uniform, ordered nanotubes with pore diameters of 18 nm, which are further characterized with Kr physisorption, XRD and FTIR spectroscopy. After impregnation of the AAOs with Ru, the presence of Ru nanoparticles inside the tubular pores is evidenced clearly for the first time via HAADF-STEM-EDX. The Ru-AAOs have been tested for catalytic activity, which showed high conversion and selectivity for the hydrogenation of toluene and butanal.
Author De Vos, Dirk E.
Glas, Daan
Negahdar, Leila
Weckhuysen, Bert M.
Meirer, Florian
Vandekerkhove, Annelies
Meeldijk, Johannes D.
Stassen, Ivo
Matveev, Serguei
AuthorAffiliation 1 Department of Microbial and Molecular Systems, Centre for Surface Chemistry and Catalysis KU Leuven Celestijnenlaan 200F, P.O. 2461 3001 Heverlee Belgium
2 Inorganic Chemistry and Catalysis, Debye Institute for Nanomaterials Science Utrecht University Universiteitsweg 99 3584 CG Utrecht The Netherlands
AuthorAffiliation_xml – name: 2 Inorganic Chemistry and Catalysis, Debye Institute for Nanomaterials Science Utrecht University Universiteitsweg 99 3584 CG Utrecht The Netherlands
– name: 1 Department of Microbial and Molecular Systems, Centre for Surface Chemistry and Catalysis KU Leuven Celestijnenlaan 200F, P.O. 2461 3001 Heverlee Belgium
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/31061778$$D View this record in MEDLINE/PubMed
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CitedBy_id crossref_primary_10_1002_cnma_202100162
crossref_primary_10_3390_nano14050451
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Issue 4
Keywords anodized aluminum oxide
Ru catalysts
butanal
hydrogenation
toluene
Language English
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Snippet Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM analysis...
Abstract Anodized aluminum oxides (AAOs) are synthesized and used as catalyst support in combination with Ru as metal in hydrogenation catalysis. SEM and TEM...
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SubjectTerms Alumina
Aluminum
Aluminum oxide
anodized aluminum oxide
butanal
Catalysis
Catalytic activity
Catalytic converters
Chemical synthesis
Contact angle
Hydrogenation
Nanoparticles
Pore size
Ru catalysts
Ruthenium
Selectivity
Solvents
Toluene
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Title Synthesis and Characterization of Ru‐Loaded Anodized Aluminum Oxide for Hydrogenation Catalysis
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