Title :
Dye-sensitized solar cells based on indium-tin oxide nanowires coated with titania layers
Author :
Wang, Hong-Wen ; Chi-Feng Ting ; Miao-Ken Hung ; Chiou, Chwei-Huann ; Liu, Ying-Ling ; Liu, Zongwen ; Ratinac, Kyle ; Ringer, S.P.
Author_Institution :
Dept. of Chem., Chung-Yuan Christian Univ., Chungli
fDate :
July 28 2008-Aug. 1 2008
Abstract :
The concept of growing ITO (Indium-Tin-oxide) or ITO/TiO2 core-shell nanowire arrays for the use of 3D electrodes in dye-sensitized solar cells (DSSCs) has been tested in the present study. By employing the template electrophoretic deposition (EPD) method, ITO and ITO/TiO2 nanowire arrays were synthesized. A 3D electrode for DSSCs was constructed using a doctor blade to coat TiO2 layers covering the ITO or ITO/TiO2 nanowire arrays. The separation of charge generation, charge transport functions, enlarged interface area were thought to be the major advantages of 3D nanowire electrodes for the optimization of DSSCs. Photoelectric conversion efficiency at 3.99% of the DSSCs made from ITO nanowires was obtained, which was much higher than those of ITO/TiO2 core- shell nanowire arrays or pristine TiO2 films. The morphology of ITO/TiO2 core-shell nanowire arrays is sensitive to fabrication process and significantly affects the final performance. Cyclic voltammetry confirmed that the reaction current was significantly enhanced when a 3D ITO nanowire electrode was used.
Keywords :
electrochemical electrodes; indium compounds; nanowires; photoelectricity; semiconductor materials; solar cell arrays; titanium compounds; voltammetry (chemical analysis); 3D electrodes; InSnO-TiO2; charge generation; charge transport; core-shell nanowire arrays; cyclic voltammetry; dye-sensitized solar cells; morphology; photoelectric conversion efficiency; reaction current; template electrophoretic deposition; titania layers; Australia; Charge carrier processes; Decision support systems; Electrodes; Electron microscopy; Indium tin oxide; Nanowires; Photovoltaic cells; Spontaneous emission; Testing; DSSCs; ITO; core-shell; nanowire;
Conference_Titel :
Optoelectronic and Microelectronic Materials and Devices, 2008. COMMAD 2008. Conference on
Conference_Location :
Sydney, SA
Print_ISBN :
978-1-4244-2716-1
Electronic_ISBN :
1097-2137
DOI :
10.1109/COMMAD.2008.4802129