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   Influence of TiO2 Layer Thickness as Photoanode in Dye-Sensitized Solar Cells  
   
نویسنده shirkavand m. ,bavir m. ,fattah a. ,alaei h. r. ,tayarani najaran m. h.
منبع aut journal of electrical engineering - 2019 - دوره : 51 - شماره : 1 - صفحه:101 -109
چکیده    Dye-sensitized solar cells (dsscs) are categorized as some of the inexpensive thin-film solar cells. the basis and foundation of these cells is a semiconductor that consists of an electrolyte and a light-sensitive anode. titanium dioxide (tio2) is a semiconductor that plays the role of the anode and is the main constituent of these cells. in this paper, we have addressed the functionality and performance of tio2 films with the thicknesses of 2.96, 7.54 and 11.1 μm in dsscs. the morphology, crystal structure, and the optical band gap are some of the effective elements on the electron transfer rate and recombination process in the tio2 film. when using tio2, one must choose the optimum thickness to ensure optimal short-circuit current, open-circuit voltage and fill factor so that the cell can have the highest possible efficiency. analysing the obtained characteristic curves, it is concluded that the efficiency of a cell with a 2.96 μm tio2 film is 4.2%; the efficiency of a cell with a 7.54 μm tio2 film is 5.54% and the efficiency of a cell with an 11.1 μm tio2 film is 6%. also, analysing the eis shows that the highest electron lifetime is 17 milliseconds which is obtained for the cell with an 11.1 μm tio2 film. the films of tio2 for each cell are provided by the doctor-blade deposition method and the dyes are deposited on their surface.
کلیدواژه Dye-sensitized solar cell ,Photoanode ,TiO2 ,Thickness ,Efficiency
آدرس khayyam university, physics department, Iran, semnan university, electrical and computer engineering department, Iran, shahrood university of technology, faculty of electrical engineering and robotic, Iran, iau varamin-pishva branch, faculty of physics, Iran, ferdowsi university of mashhad, faculty of physics, Iran
 
     
   
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