Efficient Semitransparent Inverted Polymer Solar Cells With the Anode of Tunable Incident Light Transmittance


We have a tendency to demonstrated semitransparent inverted polymer solar cells by using a transparent $hboxWO_3/hboxAg/MoO_3$ anode, that exhibited high transmittance within the visible region. The inner $hboxWO_3$ layer was introduced as a buffer layer to enhance the outlet assortment, while the outer $hboxMoO_3$ layer served as a light-weight coupling layer to boost the optical transmittance of the device. The dependence of the device performances on the thickness of the outer $hboxMoO_3$ layer was investigated, and the transmittance and reflectance of the $hboxWO_3$ (ten nm)/Ag $( hbox13 hboxnm)/hboxMoO_3$ (zero, twenty, forty, 60, and 80 nm) electrode were compared. The results show that a high transmission of 80% with a high power conversion efficiency of one.24percent was achieved when the thickness of the $hboxMoO_3$ layer was 40 nm beneath AM1.5G illumination of a hundred $hboxmW/cm^2$ from the $hboxWO_3/hboxAg/MoO_3$ aspect.

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