研究目的
To investigate the effect of surface modification of nanoripple-like ZnO nanorod arrays (R-ZnO NRAs) using two-dimensional (2D) Bi2OS2 material on the performance of inverted polymer solar cells (IPSCs).
研究成果
The study demonstrates that the modification of R-ZnO NRAs with 2D Bi2OS2 significantly improves the performance and stability of IPSCs. The optimal concentration of Bi2OS2 was found to be 2%, which enhanced the PCE from 5.51% to 7.31% for PTB7:PCBM based devices and from 8.03% to 9.94% for PBDB-T:ITIC based devices. The Bi2OS2 modification also improved the stability of the devices, retaining 80.9% of their initial PCE after 80 days.
研究不足
The study is limited to the use of specific materials (PTB7:PCBM and PBDB-T:ITIC blends) and does not explore the full range of possible materials for IPSCs. The stability tests are conducted over 80 days, which may not fully represent long-term performance under all conditions.
1:Experimental Design and Method Selection:
The study involves the fabrication of R-ZnO NRAs modified by 2D Bi2OS2 as electron transmission layers (ETLs) in IPSCs. The surface morphologies of R-ZnO NRAs were controlled by adjusting the concentration of the modified 2D Bi2OS2 solution.
2:Sample Selection and Data Sources:
ITO glass substrates were used for the growth of R-ZnO NRAs. The Bi2OS2 material was synthesized by hydrothermal method and ultrasonication process.
3:List of Experimental Equipment and Materials:
SEM (ZEISS Merlin), XRD (Bruker Discovery 08), XPS (Axis Ultra DLD), UV–vis spectrophotometer (HP 8453), PL measurements (SPEX 1681), contact angle measurements (DSA100), Keithley 2400 source unit, AM 1.5G solar simulator.
4:5G solar simulator.
Experimental Procedures and Operational Workflow:
4. Experimental Procedures and Operational Workflow: R-ZnO NRAs were in-situ synthesized on ITO substrates by hydrothermal method and then modified by different concentrations of Bi2OS
5:IPSCs were fabricated with the structure ITO/R-ZnO NRAs (R-ZnO NRAs/Bi2OS2)/PTB
PCBM (or ITIC:PBDB-T)/MoO3/Ag.
6:Data Analysis Methods:
The performance of IPSCs was analyzed using J-V characteristics, EQE measurements, and stability tests. The crystallinity and morphology of the films were analyzed using XRD and SEM.
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