Title :
Preparation of Ni0.4Cu0.6Al2O4/TiO2 composite thin film electrode and evaluation of its photoelectric properties
Author :
Nan Liu ; Yanyan Jiang ; Shuwen Jiang ; Yunchao Diao ; Jingxiao Liu ; Zhiqiang Hu
Author_Institution :
Sch. of Textile & Mater. Eng., Dalian Polytech. Univ., Dalian, China
Abstract :
The composite spinel-type Ni0.4Cu0.6Al2O4 nanoparti-cles have been synthesized by a sol-gel method, and 0%, 2%, 4% and 6wt% Ni0.4Cu0.6Al2O4 doped pure TiO2 (P25) powders were made into slurries. Ni0.4Cu0.6Al2O4/TiO2 composite thin films were prepared on compact TiO2 film coated with ITO conductive glass by screen printing method, and as the photoanode was assembled into sensitized solar cells. The crystal structure and spectral response were characterized by powder X-ray diffraction and ultraviolet-visible diffuse reflectance spectrum. The performance of sensitized solar cells of Ni0.4Cu0.6Al2O4 nanoparticles has been tested by Solar Simulator. The influences of doping amount of mixed spinel on photoelectron properties of composite thin films and photoelectron conversion efficiency of assembled battery have been investigated. The results show that Ni0.4Cu0.6Al2O4 powder possesses spinel structure and have excellent visible-light response, the band gap is only 1.48eV, the efficiency and optical performance of solar cell is increased and improved. When the doping is 4%, the composite thin film photoelectric conversion efficiency η is 3.26%, while pure TiO2 film cell efficiency η is only 1.79%, the doped cell photoelectric conversion efficiency is enhanced by 45 %.
Keywords :
X-ray diffraction; copper compounds; crystal structure; doping; electrochemical electrodes; insulating thin films; nanocomposites; nanofabrication; nanoparticles; nickel compounds; optical constants; photoelectricity; semiconductor thin films; slurries; sol-gel processing; solar cells; titanium compounds; ultraviolet spectra; visible spectra; ITO conductive glass; ITO-TiO2; Ni0.4Cu0.6Al2O4-TiO2; Ni0.4Cu0.6Al2O4-TiO2 composite thin film electrode; assembled battery; band gap; composite spinel-type nanoparticles; composite thin film photoelectric conversion efficiency; crystal structure; doped cell photoelectric conversion efficiency; doped pure powders; optical performance; photoanode; photoelectric properties; photoelectron conversion efficiency; powder X-ray diffraction; screen printing method; sensitized solar cells; slurries; sol-gel method; solar simulator; spectral response; spinel structure; thin film cell efficiency; ultraviolet-visible diffuse reflectance spectrum; visible-light response; Absorption; Decision support systems; Doping; Electrodes; Films; Photovoltaic cells; Powders; doping; dye-sensitized solar cells; electro-optic transfer efficiency; energygap; spinel;
Conference_Titel :
Materials for Renewable Energy and Environment (ICMREE), 2013 International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4799-3335-8
DOI :
10.1109/ICMREE.2013.6893609