0000000000125420

AUTHOR

Sıdıka ÇEtinkaya

showing 6 related works from this author

Alkaline treatment as a means to boost the activity of TiO(2)in selective photocatalytic processes

2020

In this work, the activity enhancement of TiO(2)photocatalysts by alkaline treatment has been investigated. Commercial (BDH, U.K., anatase phase) TiO(2)samples, treated in alkaline solutions of NaOH at different concentrations and temperatures, were tested for the photocatalytic partial oxidation of 3-pyridinemethanol in water under UVA irradiation to form vitamin B-3. Photocatalyst characterization has been carried out by XRD, BET, TEM, TGA, photoluminescence, FTIR, Raman, DRS, EPR and photocurrent measurements. The alkaline-treated samples showed an increased activity of up to 7 times (by considering first order rate constant values) compared to untreated BDH and the superior performance …

AnataseCrystallinityAdsorptionChemistryPhotocatalysisSurface modificationThermal treatmentPartial oxidationCatalysisCatalysisNuclear chemistry
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Anatase photocatalyst with supported low crystalline TiO2: The influence of amorphous phase on the activity

2018

Abstract In a previous study on commercial TiO2 nanoparticles (J. Soria et al.) we had shown that the superficial disordered layers influence their textural and reactivity features. In the present work we used well crystallized anatase particles (commercial TiO2, BDH) as support of different amounts of titania powders, prepared by TiCl4 hydrolysis and constituted by nanocrystals diluted into an amorphous matrix. The reactivity of these photocatalysts has been tested for the selective oxidation of 4-methoxybenzyl alcohol to aldehyde in aqueous suspension. The catalyst characteristics have been studied using adsorption-desorption isotherms, TEM, HRTEM, TGA, PL, DRIFT-IR, and 1H MAS-NMR spectr…

chemistry.chemical_classificationAnataseMaterials scienceProcess Chemistry and TechnologyInorganic chemistry02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciencesAldehydeCatalysis0104 chemical sciencesCatalysisAmorphous solidNanocrystalchemistryPhotocatalysisPartial oxidation0210 nano-technologyHigh-resolution transmission electron microscopyGeneral Environmental Science
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The effect of the surface disordered layer on the photoreactivity of titania nanoparticles

2017

It is well known that the surface of metal oxide catalysts presents, usually, non-crystalline species containing impurities and low coordinated cations, which are observed in HRTEM images as a disordered layer of amorphous phase. Despite of being these species more accessible and less stable than the crystalline catalysts components, they have been rarely considered when analysing the catalyst activity. In this work, we have studied the effect of a treatment with HCl solution at pH = 0 on the characteristics of the disordered layer in two commercial anatase TiO2 samples, using techniques such as TGA, 1H MAS-NMR and HRTEM, and by determining these sample photocatalytic activity for the 4-nit…

AnataseMaterials scienceInorganic chemistryOxide02 engineering and technology010402 general chemistry01 natural sciencesCatalysisCatalysisMetalchemistry.chemical_compoundImpurityDisordered titania layerHigh-resolution transmission electron microscopyGeneral Environmental ScienceProcess Chemistry and Technology021001 nanoscience & nanotechnology0104 chemical sciencesAmorphous solid4-Nitrophenol degradationchemistryChemical engineeringvisual_artTiO2 acid treatmentvisual_art.visual_art_mediumPhotocatalysisTitania modifications0210 nano-technologyPhotocatalytic activity enhancement
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Photoelectrocatalytic oxidation of 3-pyridinemethanol to 3-pyridinemethanal and vitamin B3 by TiO2 nanotubes

2020

In this paper, the first photoelectrocatalytic (PEC) 3-pyridinemethanol oxidation to 3-pyridinemethanal and vitamin B-3 was investigated. To meet this aim, efficient nanotube structured TiO2 on a Ti plate as a photoanode was prepared by an anodic oxidation method in ethylene glycol and characterized by XRD, SEM, and photocurrent techniques. The effect of nanotube morphology, applied potential, Na2SO4 concentration, stirring speed of solution, and pH on the reaction activity and product selectivities were investigated. The TiO2 phase of all of the anodes was mainly the anatase one. The PEC activity, the intensity of the XRD peak and the photocurrent increased by increasing the nanotube lengt…

PhotocurrentAnatasechemistry.chemical_compoundNanotubeSelective oxidation TiO2 nanotubes PEC reactionschemistryPhase (matter)Inorganic chemistryPhotocatalysisSelectivityEthylene glycolCatalysisCatalysis
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Selective photocatalytic oxidation of 3-pyridinemethanol on platinized acid/base modified TiO2

2021

TiO2 catalysts, modified with acidic or alkaline solutions and then platinized, were used for the partial photocatalytic oxidation of 3-pyridinemethanol to 3-pyridinemethanal and vitamin B-3 under environmentally friendly conditions. The reaction took place in water under UVA light and air oxygen. Catalysts were characterized by TEM, photoluminescence, DRIFT-IR, Raman, DRS, XPS, and photocurrent measurements. The photocatalytic activity results show that Pt loading of untreated samples leads to a significant activity improvement (hence product yield) as much as acid and alkaline treatments do. Moreover, the alkaline treated TiO2 samples exhibit a further increase in activity after loading w…

chemistry.chemical_classificationPhotocurrentElectron transferchemistryX-ray photoelectron spectroscopyBase (chemistry)Photocatalysischemistry.chemical_elementThermal stabilityOxygenCatalysisNuclear chemistryCatalysis
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Partial photoelectrocatalytic oxidation of 3-pyridinemethanol by Pt, Au and Pd loaded TiO2 nanotubes on Ti plate

2021

Abstract The photoelectrocatalytic (PEC) oxidation of 3-pyridinemethanol to 3-pyridinemethanal and vitamin B3 was investigated by using Pt, Au and Pd loaded (as single or bimetallic) nanotube structured TiO2 on Ti plate in water under UVA irradiation. Nanotube structured TiO2 on Ti plate samples were prepared as anode by anodic oxidation method in ethylene glycol solution in different times, and then they were calcined at 500 °C to be obtained in crystalline form. The anodes were loaded with noble metals by electrochemical reduction method and characterized by XRD, XPS, SEM, and photocurrent techniques. The TiO2 on the plates was in the anatase phase. The loaded metals were in metallic form…

AnataseNanotubeMaterials science02 engineering and technologyGeneral Chemistry010402 general chemistry021001 nanoscience & nanotechnologyElectrochemistry01 natural sciencesCatalysis0104 chemical scienceslaw.inventionMetalchemistry.chemical_compoundchemistrylawvisual_artvisual_art.visual_art_mediumPhotocatalysisCalcination0210 nano-technologyBimetallic stripEthylene glycolNuclear chemistry
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