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Dye-sensitised solar cells: Development, structure, operation
principles, electron kinetics, characterisation, synthesis materials and natural
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Boyo, A.O., M.B.O. Shitta, T. Oluwa and S. Adeola, 2012. Bitter leaf (Vernonia amygdalin) for dye sensitized solar cell. Trends Applied Sci. Res., 7: 558-564. CrossRefDirect Link |
Efurumibe, E.L., A.D. Asiegbu and M.U. Onuu, 2012. Dispersion relation due to the interaction of the atoms of titanium and oxygen owing to electron trapping by the anode (TiO2) of a dye-sensitized solar cell. Asian J. Applied Sci., 5: 290-298. CrossRefDirect Link |
Manikandan, K.S., G. Kumaresan, R. Velraj and S. Iniyan, 2012. Parametric study of solar parabolic trough collector system. Asian J. Applied Sci., 5: 384-393. CrossRefDirect Link |
Ponalagusamy, R. and K. Ponnammal, 2012. Local truncation error for the parallel runge-kutta-fifth order methods. Inform. Technol. J., 11: 1141-1153. CrossRef |
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How to cite this article
E.L. Efurumibe, A.D. Asiegbu and M.U. Onuu, 2012. Mathematical Modelling of Electron Transport Through the Anode (TiO2) of a Standard Dye-sensitized Solar Cell. Asian Journal of Applied Sciences, 5: 33-42.
DOI: 10.3923/ajaps.2012.33.42
URL: https://scialert.net/abstract/?doi=ajaps.2012.33.42
DOI: 10.3923/ajaps.2012.33.42
URL: https://scialert.net/abstract/?doi=ajaps.2012.33.42