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The highest energy conversion efficiency value was 5.48%.
C6DPPDHPV based device showed the highest energy conversion efficiency of 0.72%.
It can be seen that the film prepared using terpineol as the solvent has exhibited the highest energy conversion efficiency.
Among the nanorods sintered at various temperatures, those sintered at 850°C had the highest energy conversion efficiency in DSSCs.
The highest energy conversion efficiency of these materials-based solar cells has reached up to 19.5% (692 mV, 35.2 mA/cm2, FF 79.9%) at NREL [3].
Up to date, the highest energy conversion efficiency achieved 13.8% for InP NW arrays in a cell of 1 mm2 in area [9].
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DSSC also shows high energy conversion efficiency by using nanoparticle (NP) thin film as photoanode.
DSSCs have been widely researched because of their low cost and high energy conversion efficiency.
All these functions of TiCl4 treatment resulted in high energy conversion.
They prove to offer high energy conversion performance by having high UV stability and high transmittance.
It promises high energy conversion efficiency values, and is environmental friendly.
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