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The total optical generation under AM 1.5G illumination can be modeled by superimposing the power-weighted single-wavelength optical generation rates.
A promising power conversion efficiency of 1.30% (under AM 1.5G) is recorded at 24 cycles of In2S3 adsorption.
A high PCE of 7.99% was obtained by the dye QX21 under AM 1.5G irradiation.
Furthermore, chronoamperometric curves were collected during a period of 1 h at 0.3 V under AM 1.5G illumination.
To obtain the total optical generation under AM 1.5G illuminations, the power-weighted photogeneration rates of a single wavelength are superimposed from the FDTD simulation results [28,29].
Under AM 1.5 (100 mW/cm2) light irradiation for up to 30 min, a maximum 21% increase in the photo-conversion efficiency was observed.
The devices were characterized under AM 1.5 conditions and the I V curves were fitted using a two diode equation.
Under AM 1.5G sunlight.
Under AM 1.5 G sunlight irradiation, all electrodes show pronounced photoresponses.
Fig. 8 Nyquist plots of the solar cells based on different compact layers at 0.8 V under AM 1.5G.
Under AM 1.5G illumination, NP-BiVO4 and bare BiVO4 electrodes show a steady increase in photocurrent with applied potential.
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