Abstract
Addition of Co2+ into pristine BaSnO3 (BSO) nanostructures enhanced dye-sensitized solar cell (DSSC) power conversion efficiency (PCE), and the tuned efficiency of 8.22% for 3 at.% of Co doped BSO photoanode with surface treatment and scattering layer, due to the reduction in lattice mismatch and recombination effect. Impedance spectra confirms the DSSC performance by its better photoelectron transport in BSO:Co (483 ohm) compared with pristine photoanode (1202 ohm).
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