Efficiency improvement of P3CT-Na based MAPbI 3 solar cells with a simple wetting process

The averaged power conversion efficiency of polyelectrolytes (P3CT-Na) based MAPbI 3 solar cells can be increased from 14.94% to 17.46% with a wetting method before the spin-coating process of MAPbI 3 precursor solutions. The effects of the wetting process on the surface, structural, optical and exc...

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Veröffentlicht in:Nanotechnology 2021-08, Vol.32 (34), p.345402
Hauptverfasser: Kassou, Said, Wu, Jia-Ren, Thakur, Diksha, Chandel, Anjali, Chiang, Shou-En, Cheng, Kai-Jen, Chen, Sheng-Hui, Shen, Ji-Lin, Chang, Sheng Hsiung
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Sprache:eng
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Zusammenfassung:The averaged power conversion efficiency of polyelectrolytes (P3CT-Na) based MAPbI 3 solar cells can be increased from 14.94% to 17.46% with a wetting method before the spin-coating process of MAPbI 3 precursor solutions. The effects of the wetting process on the surface, structural, optical and excitonic properties of MAPbI 3 thin films are investigated by using the atomic-force microscopic images, x-ray diffraction patterns, transmittance spectra, photoluminescence spectra and Raman scattering spectra. The experimental results show that the wetting process of MAPbI 3 precursor solution on top of the P3CT-Na/ITO/glass substrate can be used to manipulate the molecular packing structure of the P3CT-Na thin film, which determines the formation of MAPbI 3 thin films.
ISSN:0957-4484
1361-6528
DOI:10.1088/1361-6528/ac0380