研究目的
Investigating the enhancement of quantum dot-sensitized solar cells' performance through a cosensitization strategy using environmentally friendly dual QD sensitizers with cascade energy structure.
研究成果
The cosensitization strategy using ZCISe and ZCIS QDs significantly enhances the performance of QDSCs by improving light harvesting, facilitating electron injection, and suppressing charge recombination, achieving a certified efficiency record of 12.98%. The cells also exhibit good stability in high-humidity environments.
研究不足
The study focuses on liquid-junction QDSCs and the stability under high humidity, but the long-term stability under operational conditions and scalability for mass production are not extensively explored.
1:Experimental Design and Method Selection:
The study employs a cosensitization strategy with Zn–Cu–In–Se (ZCISe) and Zn–Cu–In–S (ZCIS) QDs as cosensitizers. The CLIS deposition method was used to tether QDs onto TiO2 film electrodes.
2:Sample Selection and Data Sources:
TiO2 film electrodes were sequentially immersed in MPA-capped ZCISe and ZCIS QDs aqueous solutions.
3:List of Experimental Equipment and Materials:
TiO2 film electrodes, ZCISe and ZCIS QDs, 3-mercaptopropionic acid (MPA), polysulfide electrolyte redox couple, Ti mesh supported mesoporous carbon counter electrode.
4:Experimental Procedures and Operational Workflow:
The immersion time for QD deposition was optimized. Absorption spectra, J–V curves, and IPCE measurements were conducted to evaluate performance.
5:Data Analysis Methods:
TA measurements, IS measurement under dark condition, fitting of Nyquist plots to extract Cμ and Rrec.
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