Titanium dioxide (T1O2) is preferred to Zinc oxide as mesoporous oxide layer because it raised the efficiency of DSSCs from 1% to 7%. The chemistry of the process however seem rigorous to allow the light induced electron injection from the adsorbed dye into the nanocrystallites i.e. which renders the TiO2 conductive. The DSSC fabricated consist of 2.25 cm2 active area of titanium dioxide coated on FTO glass (fluorine tin oxide) immersed in ethanol solution of natural dye extracted as an anode (electrode) and counter electrode. These two electrodes were coupled together and the space between them was filled with the Iodolyte AN-50 as solid electrolyte or redox mediator. The photo electrochemical parameters of the dye extracted (Mango fruit Peel) from the results obtained are short circuit current (Isc)= 1.22×10−2, current density (Jsc)=4.07×10−2, open circuit voltage (voc) =0.53V, fill factor (FF) of 0.16 and the overall conversion efficiency (Eff) =0.345%.
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1 February 2016
PROGRESS IN APPLIED MATHEMATICS IN SCIENCE AND ENGINEERING PROCEEDINGS
29 September–1 October 2015
Bali, Indonesia
Research Article|
February 01 2016
An enhanced mangiferaindica for dye sensitized solar cell application
U. E. Uno;
U. E. Uno
a)
1Department of Physics,
Federal University of Technology
, Minna, Nigeria
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M. E. Emetere;
M. E. Emetere
b)
2Department of Physics,
Covenant University
, Ota, Nigeria
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L. A. Fadipe;
L. A. Fadipe
3Department of Chemistry,
Federal University of Technology
, Minna, Nigeria
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Jonathan Oluranti
Jonathan Oluranti
c)
4Department of Computer & Information Sciences,
Covenant University
, Ota, Nigeria
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AIP Conf. Proc. 1705, 020038 (2016)
Citation
U. E. Uno, M. E. Emetere, L. A. Fadipe, Jonathan Oluranti; An enhanced mangiferaindica for dye sensitized solar cell application. AIP Conf. Proc. 1 February 2016; 1705 (1): 020038. https://doi.org/10.1063/1.4940286
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