Cross-linked Triarylamine-Based Hole-Transporting Layer for Solution-Processed PEDOT:PSS-Free Inverted Perovskite Solar Cells

The device performance of inverted organic metallohalide perovskite solar cells (OMPSCs) is optimized via tailoring the electrode surfaces with electron- and hole-transporting materials. This work demonstrates the fabrication of PEDOT:PSS-free OMPSCs using a hole-transporting composite material cons...

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Veröffentlicht in:ACS applied materials & interfaces 2018-06, Vol.10 (25), p.21466-21471
Hauptverfasser: Chang, Chia-Chih, Tao, Jhih-Hao, Tsai, Che-En, Cheng, Yen-Ju, Hsu, Chain-Shu
Format: Artikel
Sprache:eng
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Zusammenfassung:The device performance of inverted organic metallohalide perovskite solar cells (OMPSCs) is optimized via tailoring the electrode surfaces with electron- and hole-transporting materials. This work demonstrates the fabrication of PEDOT:PSS-free OMPSCs using a hole-transporting composite material consisting of bilayered vanadium oxide (VO x ) and a thermally cross-linked triarylamine-based material X-DVTPD, which contributes to higher V oc and J sc values. The hydrophobicity of X-DVTPD resulted in the formation of large perovskite crystals and enhanced the stability of OMPSCs. Integration of ionic fullerene derivative, fulleropyrrolidinium iodide, in OMPSCs as a hole-blocking interfacial layer at the interface with Ag proves effective to further boost the device efficiency to 18.08%.
ISSN:1944-8244
1944-8252
DOI:10.1021/acsami.8b04396