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A good conversion efficiency of 6.74% with JSC of 16.04 mA/cm2, an open-circuit voltage (VOC) of 0.657 V and a fill factor of 0.64 under illumination of 100 mwasm2 was obtained for the DSSC with 10% of PVDF-HFP containing 0.4 M of TBAI and 0.04 M of I2 in PVDF-HFP/AN system.
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Facades integration adds pre-requisites to the design specifications of the solar thermal collectors, mainly related to the architectural acceptance and good conversion efficiency.
After optimization with the sweep-segment number, the 27-sweep-segment polyaniline CE had a good electrocatalytic activity for the I−/I3− redox couple, and the DSSC assembled with such CE exhibited a good energy conversion efficiency of 5.92%, which is comparable to that of DSSC with sputtered-Pt CE.
As photoactive materials, π-conjugated oligomer based organic solar cell showed significantly high photocurrent density of ∼12.05 mA/cm2 with reasonably good power conversion efficiency of ∼2.43%.
Bulk-heterojunction (BHJ) PSCs based on an inverted device configuration of ITO/PFN/PDTBDT-HSTBT PC61BM/MoO3/Ag showed good photovoltaITO/PFN/PDTBDT-HSTBT PC61BM/MoO3/Agn efficiency of 3.24%.
Bulk heterojunction photovoltaic cells made of a blend of P DPP-6T -2 and (6,6)–P DPP-6T -2butyric andd methyl ester displayed good device performance with a power conversion efficiency of 4.6,6 phenyl
DSSC based on PEDOT CE polymerized with 0.05 M of EDOT and 0.1 M of LiClO4 shows good photovoltaic performance, with a power conversion efficiency of 7.42%.
But the newly designed hybrid system where N719 dye anchored between TiO2 and CdSe showed a good stability by delivering a power conversion efficiency of 2.64% with an improved open circuit potential and enhanced fill factor.
They possess moderate thermal stability and good open-circuit voltages, and the power conversion efficiency of them reached to 1.11% and 0.45%, respectively, under simulated AM 1.5 G solar irradiation (100 mW cm−2), which shows a new strategy to design photosensitizers for DSSCs.
The solar cells demonstrate an energy conversion efficiency of 0.44% with good bending tolerance.
The power conversion efficiency of the fabricated GAZO electrode-based OPV devices is not good enough.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com