DocumentCode :
2699662
Title :
Studies the efficiency of nano composite thin film for the production of hydrogen gas
Author :
Mohammed, Haleemah J. ; Sahan, Kassim M.
Author_Institution :
Renewable Energy Directorate, Minist. of Sci. & Technol., Baghdad, Iraq
fYear :
2015
fDate :
24-26 March 2015
Firstpage :
1
Lastpage :
5
Abstract :
In this research had been studied the preparation and the study of the efficiency of Composites nano thin film for the production of electrodes used in the production of hydrogen gas through the Electrolysis cell consists of these Anode nano (Co2O3:Sn) either electrode, cathode nano (NI.MO) In the water electrolysis process the hydrogen is produced by electrochemical splitting water molecules (H2O) into their constituent hydrogen (H2) and oxygen (O2). This thin film was prepared on glass substrates, also stainless steel by using deposition N d: YAG laser pulse (LPD) technique (532 nm, 25 mW). Structured characteristics were studied through the analysis of xray diffraction (XRD) of the prepared film for determining the yielding phase which are to set the with standard tables. Also, the sample was tested atomic force microscope to identify the roughness of prepared films surface. The study of the volume of gas output, voltages with change time and current, And the efficiency of this cell to the electrode material, the distance between the electrodes.
Keywords :
atomic force microscopy; electrochemical electrodes; electrolysis; hydrogen production; laser beam applications; nanocomposites; substrates; thin films; X-ray diffraction analysis; YAG laser pulse technique; anode nano; atomic force microscope; cathode nano; cell efficiency; change time; electrochemical splitting water molecules; electrode nano; electrode production; electrolysis cell; gas output; glass substrates; hydrogen gas production; nano composite thin film; stainless steel; water electrolysis process; yielding phase determination; Electrochemical processes; Electrodes; Glass; Hydrogen; Nanobioscience; Production; Substrates; Sn); X-ray diffraction; atomic force microscope; nano (NLMO); nano thin film; nano (CO2O3;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Renewable Energy Congress (IREC), 2015 6th International
Conference_Location :
Sousse
Type :
conf
DOI :
10.1109/IREC.2015.7110867
Filename :
7110867
Link To Document :
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