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Dive into the research topics where Ahmet Gülce is active.

Publication


Featured researches published by Ahmet Gülce.


Journal of Hazardous Materials | 2013

Efficient photocatalytic decolorization of some textile dyes using Fe ions doped polyaniline film on ITO coated glass substrate

Bircan Haspulat; Ahmet Gülce; Handan Gülce

In this study, the photocatalytic decolorization of four commercial textile dyes with different structures has been investigated using electrochemically synthesized polyaniline and Fe ions doped polyaniline on ITO coated glass substrate as photocatalyst in aqueous solution under UV irradiation for the first time. Scanning electron microscopy, atomic force microscopy, FT-IR spectra, UV-vis spectroscopy measurements were used to characterize the electrochemically synthesized polymer film photocatalyst. Film hydrophilicity was assessed from contact angle measurements. The results show that both of the polymer films exhibit good photocatalytic performance. Surprisingly, it was determined that by using Fe(II) ions during polymerization, it is possible to modify the surface roughness and wettability of the produced polyaniline films which favors their photocatalytic activity in water-based solutions. All four of the used dyes (methylene blue, malachite green, methyl orange and methyl red) were completely decolorizated in 90 min of irradiation under UV light by using Fe ions doped polyaniline at the dye concentration of 1.5 × 10(-5)M, while the decolorization of those dyes were between 43% and 83% by using polyaniline as photocatalyst. Hence, it may be a viable technique for the safe disposal of textile wastewater into waste streams.


Talanta | 2011

Amperometric biosensors based on deposition of gold and platinum nanoparticles on polyvinylferrocene modified electrode for xanthine detection.

Salih Zeki Bas; Handan Gülce; Salih Yildiz; Ahmet Gülce

In this study, new xanthine biosensors, XO/Au/PVF/Pt and XO/Pt/PVF/Pt, based on electroless deposition of gold(Au) and platinum(Pt) nanoparticles on polyvinylferrocene(PVF) coated Pt electrode for detection of xanthine were presented. The amperometric responses of the enzyme electrodes were measured at the constant potential, which was due to the electrooxidation of enzymatically produced H(2)O(2). Compared with XO/PVF/Pt electrode, XO/Au/PVF/Pt and XO/Pt/PVF/Pt exhibited excellent electrocatalytic activity towards the oxidation of the analyte. Effect of Au and Pt nanoparticles was investigated by monitoring the response currents at the different deposition times and the different concentrations of KAuCl(4) and PtBr(2). Under the optimal conditions, the calibration curves of XO/Au/PVF/Pt and XO/Pt/PVF/Pt were obtained over the range of 2.5 × 10(-3) to 0.56 mM and 2.0 × 10(-3) to 0.66 mM, respectively. The detection limits were 7.5 × 10(-4)mM for XO/Au/PVF/Pt and 6.0 × 10(-4)mM for XO/Pt/PVF/Pt. The effects of interferents, the operational and the storage stabilities of the biosensors and the applicabilities of the proposed biosensors to the drug samples analysis were also evaluated.


Advanced Composite Materials | 2017

Preparation and mechanical properties of carbon nanotube grafted glass fabric/epoxy multi-scale composites

Volkan Eskizeybek; Ahmet Avci; Ahmet Gülce

In the present paper, carbon nanotubes (CNTs) were chemically grafted onto surfaces of the amino silane treated glass fabric by a novel chemical route for the first time to create 3D network on the glass fibers. The chemical bonding process was confirmed by Fourier transform infrared spectroscopy and scanning electron microscopy. The glass fabric/CNT/epoxy multi-scale composite laminates were fabricated with the CNT grafted fabrics using vacuum assisted resin infusion molding. Tensile tests were conducted on fabricated multi-scale composites, indicating the grafting CNTs on glass fabric resulted a decrease (11%) in ultimate tensile strength while toughness of the multi-scale composite laminates were increased up to 57%. Flexural tests revealed that the multi-scale composite laminates prepared with CNT grafted glass fabric represent recovering after first load fall. The interfacial reinforcing mechanisms were discussed based on fracture morphologies of the multi-scale composites.


Applied Catalysis B-environmental | 2012

Preparation of the new polyaniline/ZnO nanocomposite and its photocatalytic activity for degradation of methylene blue and malachite green dyes under UV and natural sun lights irradiations

Volkan Eskizeybek; Fahriye Sarı; Handan Gülce; Ahmet Gülce; Ahmet Avci


Biosensors and Bioelectronics | 2006

Amperometric glucose biosensor based on gold-deposited polyvinylferrocene film on Pt electrode

Meral Topcu Sulak; Özlem Gökdoğan; Ahmet Gülce; Handan Gülce


Industrial & Engineering Chemistry Research | 2013

Preparation of a New Polyaniline/CdO Nanocomposite and Investigation of Its Photocatalytic Activity: Comparative Study under UV Light and Natural Sunlight Irradiation

Handan Gülce; Volkan Eskizeybek; Bircan Haspulat; Fahriye Sarı; Ahmet Gülce; Ahmet K. Avci


Composites Part A-applied Science and Manufacturing | 2014

The Mode I interlaminar fracture toughness of chemically carbon nanotube grafted glass fabric/epoxy multi-scale composite structures

Volkan Eskizeybek; Ahmet Avci; Ahmet Gülce


Journal of Biochemical and Biophysical Methods | 2005

Polyvinylferrocenium modified Pt electrode for anaerobic glucose monitoring.

Ahmet Gülce; Handan Gülce


Journal of Electroanalytical Chemistry | 2013

Polyvinylferrocenium based platinum electrodeposited amperometric biosensors for lysine detection

Ozlem Sahin; Handan Gülce; Ahmet Gülce


Journal of Electroanalytical Chemistry | 2012

Electrocatalytic oxidation of methanol on poly(vinylferrocene) modified Pt electrode

Eda Akgül; Ahmet Gülce; Handan Gülce

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Volkan Eskizeybek

Çanakkale Onsekiz Mart University

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H. Gülce

Süleyman Demirel University

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Meral Topcu Sulak

Gebze Institute of Technology

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