Search results for " Heteropolyacid"

showing 10 items of 19 documents

Keggin heteropolyacid supported on BN and C3N4: Comparison between catalytic and photocatalytic alcohol dehydration

2020

The Keggin heteropolyacid (HPA), H3PW12O40 (PW12) has been supported on commercial boron nitride (BN) and two types of home prepared carbon nitride (C3N4). The supported PW12 was used in the gas-solid (photo)catalytic 2-propanol dehydration reaction to give propene at atmospheric pressure and temperatures in the range 70–120 °C and resulted more active than the pristine PW12. Reaction rate increased by increasing the temperature. Noticeably, the propene formation rate was higher by irradiating the catalytic system. The PW12/BN material resulted more active than PW12/C3N4. The acidity of the HPA cluster accounts for the catalytic role, whereas both the acidity and the redox properties of the…

2-Propanol dehydration Heteropolyacid Keggin Photocatalysis PolyoxometalateMaterials scienceInorganic chemistry02 engineering and technology01 natural sciencesRedoxCatalysisReaction ratePropenechemistry.chemical_compoundPhotocatalysi0103 physical sciences2-Propanol dehydrationGeneral Materials ScienceKegginCarbon nitride010302 applied physicsPolyoxometalateMechanical EngineeringHeteropolyacid021001 nanoscience & nanotechnologyCondensed Matter PhysicsDehydration reactionchemistrySettore CHIM/03 - Chimica Generale E InorganicaMechanics of MaterialsBoron nitridePhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technology
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Comparison of activity in the 2-propanol dehydration of supported heteropolyacid (photo)catalysts at the gas-solid interface

2015

Catalytic and photocatalytic tests for 2-propanol dehydration to propene were successfully carried out by using binary materials obtained by supporting a Keggin heteropolyacid H3PW12O40 (PW12) via impregnation method and/or solvothermal treatment. The supports used were commercial SiO2 (Mallinckrodt), TiO2 (Evonik P25) and multiwall carbon nanotubes (Sunnano) or home solvothermically prepared SiO2 and TiO2. (Photo)catalytic 2-propanol dehydration was studied in gas-solid regime by using a continuous (photo)reactor working at atmospheric pressure and 80 °C. the reaction was also studied by performing FTIR spectra of the gas-phase over the HPA-support composites, where the 2-propanol had been…

2-propanol supported heteropolyacid photocatalystSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Improved (photo)catalytic propene hydration in a gas/solid system by using heteropolyacid/oxide composites: Electron paramagnetic resonance, acidity,…

2017

Binary materials composed of the oxides SiO2, TiO2 and N-doped TiO2 and the Keggin heteropolyacid (PW12) were prepared and physicochemically characterized. They were used as catalysts and photocatalysts for the hydration of propene to 2-propanol. The characterization of the samples, particularly the electron paramagnetic resonance (EPR) spectroscopy results and the acidity properties, were useful to explain the key role played by the PW12 in the composite materials in the thermal and photoassisted catalytic processes. The simultaneous pres-ence of heat and UV light improved the activity of PW12 in the thermal process, and the binary materials showed better (photo)catalytic activities than t…

AlkeneOxideHydrationHeteropolyacids02 engineering and technologyAlkenes010402 general chemistryHeterogeneous catalysis01 natural sciencesAlkenes Heterogeneous catalysis Heteropolyacids Hydration Photocatalysis PolyoxometalatesCatalysislaw.inventionPropeneInorganic Chemistrychemistry.chemical_compoundHeterogeneous catalysiPhotocatalysilawReactivity (chemistry)PhotocatalysisComposite materialElectron paramagnetic resonanceHeterogeneous catalysisPolyoxometalatePolyoxometalatesAlkenes; Heterogeneous catalysis; Heteropolyacids; Hydration; Photocatalysis; PolyoxometalatesHeteropolyacid021001 nanoscience & nanotechnology0104 chemical sciencesCharacterization (materials science)chemistryPhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technology
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Photocatalytic conversion of glucose in aqueous suspensions of heteropolyacid-TiO2 composites.

2015

Commercial and home prepared TiO2 samples were functionalized with a commercial Keggin heteropolyacid (HPA) H 3PW12O 40 (PW12) or with a hydrothermally home prepared K 7PW11O 39 salt (PW11). All the materials were characterized by specific surface area measurements (BET), XRD analyses, Raman, DRS along with SEM observations and they have been used for glucose photocatalytic conversion in an aqueous suspension. Different reaction extents and distribution of intermediate oxidation products were observed depending on the photocatalyst. Gluconic acid, arabinose, erythrose and formic acid were observed as oxidation products when bare TiO2 or HPA/TiO2 composite materials were used. Glucose isomer…

Aqueous solutionGlucose photocatalysis heteropolyacidsFormic acidGeneral Chemical EngineeringInorganic chemistryGeneral ChemistryGlucaric Acidchemistry.chemical_compoundAdsorptionglucose photocatalysischemistrySpecific surface areaPhotocatalysisGluconic acidSettore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite materialIsomerization
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Keggin heteropolyacid H3PW12O40 supported on different oxides for catalytic and catalytic photo-assisted propene hydration

2013

Catalytic and catalytic photo-assisted hydration of propene to form 2-propanol in gas–solid regime at atmospheric pressure and 85 1C were carried out by using a heteropolyacid (POM) supported on different oxides. Binary materials were prepared by impregnation of H3PW12O40 on different commercial and home prepared supports (TiO2, SiO2, WO3, ZrO2, ZnO, Al2O3). Some of the composites were active both for catalytic and catalytic photo-assisted reactions. The Keggin type POM was completely and partially degraded, when supported on ZnO and Al2O3, respectively, and these binary solids always resulted as inactive for both catalytic and catalytic photo-assisted reactions. The supported Keggin POM sp…

DiffractionDiffuse reflectance infrared fourier transformAtmospheric pressureSurface PropertiesScanning electron microscopeWaterGeneral Physics and AstronomyOxidesAlkenesPhotochemical ProcessesPhotochemistryCatalysisTungstenCatalysisPropenechemistry.chemical_compoundchemistryPressureSettore CHIM/07 - Fondamenti Chimici Delle Tecnologiesense organsIrradiationKeggin heteropolyacid catalytic propene hydration photo-assisted propene hydrationParticle SizePhysical and Theoretical ChemistryFourier transform infrared spectroscopyPhysical Chemistry Chemical Physics
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Keggin heteropolyacid supported on TiO2 used in gas-solid (photo)catalytic propene hydration and in liquid-solid photocatalytic glycerol dehydration

2017

Abstract (Photo)catalytic propene hydration to 2-propanol and glycerol dehydration to acrolein were carried out by using Keggin heteropolyacids (HPAs) supported on TiO 2 . Binary materials have been prepared by impregnation of H 3 PW 12 O 40 , H 3 PMo 12 O 40 and H 4 SiW 12 O 40 , on TiO 2 Evonik P25. Moreover, a binary material consisting of H 4 SiW 12 O 40 and TiO 2 was prepared via a hydrothermal treatment and tested for the same reactions. All the materials were characterized by X-ray diffraction (XRD), scanning electron microscopy observations (SEM) coupled with energy dispersive X-ray (EDX) measurements, diffuse reflectance spectroscopy (DRS), Raman spectroscopy and Fourier transform …

GlycerolDiffuse reflectance infrared fourier transformScanning electron microscopeInorganic chemistry02 engineering and technology010402 general chemistry01 natural sciencesPropeneCatalysisCatalysiCatalysisPropenechemistry.chemical_compoundsymbols.namesakePhotocatalysiGlycerol; Heteropolyacid; Photocatalysis; Polyoxometalate; Propene; Catalysis; Chemistry (all)Fourier transform infrared spectroscopyPhotocatalysisPolyoxometalateHeteropolyacid propene glycerolAcroleinChemistry (all)General ChemistryHeteropolyacid021001 nanoscience & nanotechnology0104 chemical scienceschemistrysymbolsPhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyRaman spectroscopy
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Supported H3PW12O40 for 2-propanol (photo-assisted) catalytic dehydration in gas-solid regime: The role of the support and of the pseudo-liquid phase…

2016

Abstract Catalytic and photocatalytic 2-propanol dehydration was carried out by using a supported Keggin heteropolyacid H3PW12O40 (PW12). Binary materials were prepared by impregnation and/or solvothermal treatment by using commercial supports: SiO2 (Mallinckrodt), TiO2 (Evonik P25) and multiwall carbon nanotubes (Sunnano) or home solvothermically prepared SiO2 and TiO2. All the materials have been characterized by X-ray diffraction (XRD), scanning electron microscopy observations (SEM) coupled with EDX microanalysis, specific surface area measurements, diffuse reflectance spectroscopy (DRS), FTIR and Raman spectroscopy. (Photo)catalytic 2-propanol dehydration was studied in gas-solid regim…

Heteropolyacid 2-Propanol dehydration Photocatalysis Pseudo-liquid phase Keggin.business.operation010405 organic chemistryProcess Chemistry and TechnologyInorganic chemistryMallinckrodt010402 general chemistryPhotochemistry01 natural sciencesCatalysis0104 chemical sciencesCatalysisReaction ratePropenechemistry.chemical_compoundDehydration reactionchemistrySpecific surface areaPhotocatalysisDiisopropyl ether2-Propanol dehydration Heteropolyacid Keggin Photocatalysis Pseudo-liquid phaseSettore CHIM/07 - Fondamenti Chimici Delle TecnologiebusinessGeneral Environmental Science
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Enhanced (photo)catalytic activity of Wells-Dawson (H6P2W18O62) in comparison to Keggin (H3PW12O40) heteropolyacids for 2-propanol dehydration in gas…

2016

Abstract Catalytic and photocatalytic 2-propanol dehydration to propene at atmospheric pressure and a temperature range of 60–120 °C were carried out in gas-solid regime by using bare and supported Keggin H 3 PW 12 O 40 (PW 12 ) and Wells-Dawson H 6 P 2 W 18 O 62 (P 2 W 18 ) heteropolyacids (HPAs). Binary materials were prepared by impregnation of the HPAs on commercial SiO 2 and TiO 2 . The Wells-Dawson was in any case more active than the Keggin heteropolyacid and the differences were enhanced when the supported samples were used. In particular, Wells-Dawson HPA supported on TiO 2 and under irradiation showed the highest activity. The HPA species played the key role both in the catalytic …

Inorganic chemistry02 engineering and technologyActivation energy010402 general chemistry01 natural sciencesRedoxCatalysisCatalysiCatalysisPropeneReaction ratePropanolchemistry.chemical_compound2-Propanol dehydration Heteropolyacid Keggin Photocatalysis Polyoxometalate Wells-DawsonPhotocatalysiKegginWellsWells-Dawson2-Propanol dehydrationOrganic chemistryKegginPolyoxometalateProcess Chemistry and TechnologyHeteropolyacid021001 nanoscience & nanotechnology0104 chemical scienceschemistryPolyoxometalatePhotocatalysisSettore CHIM/07 - Fondamenti Chimici Delle TecnologieHeteropolyacid Polyoxometalate0210 nano-technologyphotocatalysisApplied Catalysis A: General
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Supported Keggin heteropolyacid catalysts for glycerol acetylation

2017

Heteropolyacids (HPAs) are a class of molecular metal oxides called polyoxometalates, with a heteroatom in the cluster structure forming an oxo-metallic cluster with the addenda metal atoms. Due to the tunable acid-base and redox properties, HPAs have been used as catalysts both for homogeneous and heterogeneous reactions. Many efforts have been devoted to HPAs heterogeneization because, being soluble in polar solvents, their separation and recovery in liquid-solid regime reactors is a relevant practical application problem. Moreover, due to the low specific surface areas (1÷10 m2 g-1) their dispersion on supports with high surface area can increase the accessibility of the reacting species…

Keggin heteropolyacidSettore CHIM/07 - Fondamenti Chimici Delle Tecnologieglycerol acetylationKeggin heteropolyacid catalytic glycerol acetylation
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Heteropolyacids supported on boron nitride and carbon nitride for catalytic and catalytic photo-assisted alcohol dehydration

2021

Keggin H3PW12O40 (PW12) and Wells-Dawson H6P2W18O60 (P2W18) heteropolyacids (HPAs) are photo(catalysts) for various acid-promoted and redox catalytic reactions. Their activity increases if they are deposited on certain supports as metal oxides or carbon materials. Although the surface area and acid-base interactions of the HPAs with supports are considered as key factors for the performance of the binary material, the role of the local structure changes in the HPAs upon their immobilization on solids must be also of primary importance, directly affecting both acidity and photoredox properties. Here, the (photo)catalytic performance of Keggin and Wells-Dawson heteropolytungstates supported o…

Materials sciencePhoto assistedAlcohol02 engineering and technology010402 general chemistry01 natural sciencesCatalysisCatalysis2-Propanol dehydration Boron nitride Carbon nitride Heteropolyacid Keggin Photocatalysis Wells-Dawsonchemistry.chemical_compoundHeteropolyacid | KegginWells-Dawsonmedicine2-Propanol dehydrationDehydrationPhotocatalysisCarbon nitrideGeneral ChemistryCarbon nitrides021001 nanoscience & nanotechnologymedicine.disease0104 chemical sciencesBoron nitrideKeggin Wells-Dawson Heteropolyacid Boron nitride Carbon nitride 2-Propanol dehydration PhotocatalysischemistryBoron nitrideSettore CHIM/07 - Fondamenti Chimici Delle TecnologieMethanol0210 nano-technologyNuclear chemistryCatalysis Today
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