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اطلاعات دوره: 
  • سال: 

    2016
  • دوره: 

    23
تعامل: 
  • بازدید: 

    143
  • دانلود: 

    0
چکیده: 

THIS ARTICLE PRESENTS A METHOD FOR ELECTROCHEMICALLY PREPARATION OF NICKEL-SILICA NANOCOMPOSITE COATINGS ON THE CARBON STEEL AS SUBSTRATE. INCORPORATION OF NANO-SILICA PARTICLES IN METAL COATINGS MEAN WHILE ELECTRODEPOSITION SEEN TO BE SO DIFFICULT, GENERALLY LESS THAN 1% CONTENT OF SILICA IN COMPOSITE WAS DEPOSITED IN DIFFERENT CURRENT DENSITIES, AGITATION SPEEDS AND SILICA CONCENTRATIONS DUE TO SMALL SIZE AND THE HYDROPHILICITY OF SIO2. ...

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بازدید 143

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نویسنده: 

Rouhollahi A. | BATAVANI N.

اطلاعات دوره: 
  • سال: 

    2014
  • دوره: 

    11
تعامل: 
  • بازدید: 

    191
  • دانلود: 

    0
چکیده: 

IN THIS WORK, WE REPORT A TECHNIQUE FOR FABRICATION OF NANO CATALYST FOR METHANOL SENSING. METHANOL IS VERY USEFUL ORGANIC SOLVENT WITH WIDE RANGE OF APPLICATIONS AND TOXICITY [1], IT MADE THE NEEDS OF RELIABLE AND SELECTIVE METHANOL SENSORS VERY CRUCIAL. IT WAS OBSERVED THAT THE KINETICS OF METHANOL OXIDATION REACTION (MOR) WAS SLOW, THEREFORE ELECTRODE POSITION OF NANO SIZED NOBLE METALS SUCH AS PT ON FTO GLASS AS OXIDATION NANO CATALYST WAS INVESTIGATED. DUE TO VERY HIGH PRICE OF PLATINUM AND THE FACT THAT CO AND CO2 WHICH ARE INTERMEDIATES OF MOR CAN POISON CATALYST SURFACE, DEVELOPMENT A CATALYST CONSISTING OF PT-CU NANOPARTICLE ON FTO SURFACE FOR METHANOL OXIDATION REACTION [2]. THIS CATALYST WAS DEPOSITED IN SULFURIC ACID SOLUTION CONTAINING K2PTCL6 AND CUSO4.5H2O AT ROOM TEMPERATURE BY CYCLIC VOLTAMMETRY [3]. A RESPONSE SURFACE DESIGN (RSD) WAS EMPLOYED TO OPTIMIZE EXPERIMENTAL FACTOR OF VOLTAMMETRIC ELECTRODEPOSITION EFFECTING RESPONSE OF MOR. THE LIMIT OF DETECTION CALCULATED FOR SENSOR WAS 9.6 PPM.

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بازدید 191

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نویسندگان: 

نشریه: 

NANOSCALE

اطلاعات دوره: 
  • سال: 

    2018
  • دوره: 

    10
  • شماره: 

    3
  • صفحات: 

    1196-1206
تعامل: 
  • استنادات: 

    1
  • بازدید: 

    106
  • دانلود: 

    0
کلیدواژه: 
چکیده: 

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بازدید 106

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نویسندگان: 

MADRAM A.R. | MOHEBBI M. | NASIRI M. | SOVIZI M.R.

اطلاعات دوره: 
  • سال: 

    2018
  • دوره: 

    5
  • شماره: 

    1
  • صفحات: 

    1-11
تعامل: 
  • استنادات: 

    0
  • بازدید: 

    132
  • دانلود: 

    0
چکیده: 

In this study ternary Ni-P-CeO2 catalysts were First synthesized by the Coelectrodeposition method on a copper substrate and then characterized by means of microstructural and electrochemical techniques toward a hydrogen evolution reaction (HER). Also, for comparison other catalysts such as Ni-CeO2, Ni-P, and Ni were prepared and characterized by the same methods. The microstructure of the investigated catalysts was characterized by scanning electron microscopy (SEM) coupled with energy dispersive X-ray spectrometry (EDX) and X-ray diffraction (XRD) methods. The electrochemical efFiciency of all investigated catalysts was studied based on electrochemical data obtained from electrochemical impedance spectroscopy (EIS) and steady-state polarization Tafel curves in 1 M NaOH solution. The results showed that microstructural properties play an essential role in the high electrocatalytic activity of Ni-P-CeO2. Furthermore, it was observed that the HER mechanism for all investigated systems was Volmer-Heyrovsky with a Volmer step as the rate determining step (RDS). The Ni-P-CeO2 catalyst, as the most active catalyst in this work, was characterized by an exchange current density of j0 =168. 0 µ Acm-2, a Tafel slope of b=-162. 0 mV. dec-1, and overpotential at j=250 mAcm-2; η 250 =-143. 0 mV.

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بازدید 132

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