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Method design and analysis |
Figure – 1 Pictorial representation of a thin layer of DSSC[/caption]
Figure – 2 shows the layers present in a basic DSSC (exploded view).
[caption id="attachment_3737" align="aligncenter" width="274"]
Figure – 2 Layers in a Dye – Sensitized Solar Cell[/caption]
Referring to Figure – 2:
Figure – 3 Operating principle of the DSC (Dye – Sensitized Solar Cell)[/caption]
The Figure - 4 illustrates the TiO2 (anatase) film which is acquired from scanning electron micrograph and stored by screen imprinting on a leading glass sheet whose function is to behave as a current collector. The TiO2mass is about 1 – 4 mg / cm2 and film thickness is normally about 5 – 20 µm. The layer morphology analysis depicts the pore size to be around 15 nm and the porosity is about 50 – 65 %. The common physical shapes of the nanoparticles of type anatase are pseudocubic, square – bipyramidaland stablike. Concurring to HRTEM estimations the (1 0 1) face is for the most part uncovered after by (1 0 0) and (0 0 1) surface introduction. (Grätzel, 2003)
[caption id="attachment_3739" align="aligncenter" width="373"]
Figure – 4 Scanning electron micrograph of TiO2 (anatase) film[/caption]
A late option exemplification of the DSC idea is the sensitized hetero - junction more often than not with an inorganic wide band gap nano - crystalline semiconductor of n - type polarity as electron acceptor, the charge neutrality on the dye being re-established by an opening conveyed by the complementary semiconductor, inorganic or organic and of p-type polarity. The earlier photo - electrochemical variation, being further progressed being developed, has an AM 1.5 solar conversion efficiency of more than 10%, whereas that of the solid-state device is till greatly lower. (Grätzel, 2003)
Figure – 3 Functioning of a Dye - Sensitized Solar Cell (DSSC)[/caption]
Figure – 3 shows the schematic of working of a DSSC. Following is a six – step process of working of a DSSC:
| Dye | Surface (in cm2) | Efficiency (in %) | Voc (in V) | Isc (mA * cm-2) | FF (in %) |
| N – 719 | < 1 | 11.2 | 0.84 | 17.73 | 74 |
| N – 749 | 0.219 | 11.1 | 0.736 | 20.9 | 72 |
| N – 749 | 1.004 | 10.4 | 0.72 | 21.8 | 65 |
| N – 719 | 1.31 | 10.1 | 0.82 | 17 | 72 |
| N – 3 | 2.36 | 8.2 | 0.726 | 15.8 | 71 |
| N – 749 | 26.5 | 6.3 | 6.145 | 1.7 | 60 |
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