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Preliminary results of investigations on parameters for best conversion efficiency of laser produced plasmas, concepts for high-power lasers and scalability of gas discharge based sources are presented.
In conjunction with TiO2 microspheres photoanode and a typical coadsorbent DPA, the devices sensitized by RC-36 achieve the best conversion efficiency of 10.23%.
All things considered, the dye (SH-14) with closed ring shape shows the best conversion efficiency of 6.01% under AM 1.5G conditions (N719 dye's 7.59% under the same conditions).
The best conversion efficiency of 3.2% is obtained when the sheet resistance of the ZnO dense layer is 2500 Ω/□ and the thickness of the ZnO porous layer is 15 μm.
As expected from these differences, the solar cell with an Al ZnO/CdS/CuInS2/Mo structure derived from the homogeneous In film showed the best conversion efficiency of 7.8% with relatively high reproducibility.
A facile and reliable method is applied to prepare the electrolyte based on hydroquinone (HQ /benzoquinone (BQ) redox couple for dye-sensitized solar cells (DSSCs) in open environment by adding moderate amount of acetic acid (HAc), and the best conversion efficiency of 5.82% is achieved under 100 mW cm−2 (AM 1.5 G) illumination.
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However, the best conversion efficiency for ZnO was achieved in the presence of CH4 molecules.
Solar cells with MAPbI2Br photoactive layers exhibit best conversion efficiency and show promise of high thermal stability.
At this optimum thickness of the TiO2 dense layer, the best conversion efficiency is obtained when the thickness of the ZnO nanoporous layer is 15 μm.
For the GaAs-based NW arrays, the best conversion efficiency has been demonstrated at the level of 1% at room temperature [18].
The best conversion efficiency was 7.98% for the G4-doped device with a Jsc of 17.8 mA cm−2, a Voc of 0.67 V, and an FF of 0.67.
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