研究目的
Investigating the fabrication and performance of a new type of excitonic solar cell based on heterojunctions between PbSe semiconducting thin film and thin ZnO film.
研究成果
The solar cell structure fabricated using ZnO and PbSe thin films as active layers showed potential for solar cell applications, with the p-type PbSe material absorbing most electrons from the ZnO film. However, further optimization is needed to enhance device performance. The crystallinity and film formation were confirmed, and the semiconducting nature was verified, indicating the device's capability under bright and dark field light illumination.
研究不足
The study notes that further optimization is required to improve the device performance, particularly in terms of carrier generation and efficiency under lower watt illumination conditions.
1:Experimental Design and Method Selection:
The study involved the synthesis of ZnO and PbSe nanoparticles via the sol-gel method, followed by their deposition on ITO substrates using thermal evaporation. The heterojunction thin films were annealed to form a p-n junction.
2:Sample Selection and Data Sources:
High purity materials including Zinc acetate dihydrate, Sodium Hydroxide, Selenium powder, Sodium sulfite, Lead acetate trihydrate, and Indium Tin Oxide (ITO) substrate were used.
3:List of Experimental Equipment and Materials:
Equipment included a thermal evaporation system, semiconductor parameter analyzer (SPA), Four Probe Method setup, thin film XRD, Hall Effect measurement system, and FESEM.
4:Experimental Procedures and Operational Workflow:
The process involved synthesis of nanoparticles, deposition on ITO substrates, annealing, and characterization of the films and device performance.
5:Data Analysis Methods:
The crystallinity was analyzed using XRD, conductivity was measured using the Four Probe Method, and device performance was evaluated using SPA under different illumination conditions.
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Zinc acetate dihydrate
Merck
Starting material for the synthesis of ZnO nanoparticles
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Sodium Hydroxide
Merck
Used in the synthesis of ZnO nanoparticles
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Selenium powder
Merck
Starting material for the synthesis of PbSe nanoparticles
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Sodium sulfite
Merck
Used in the synthesis of PbSe nanoparticles
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Lead acetate trihydrate
Merck
Starting material for the synthesis of PbSe nanoparticles
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Indium Tin Oxide (ITO) substrate
Merck
Substrate for coating the synthesized nanoparticles
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semiconductor parameter analyzer (SPA)
Analyzing device performance under bright and dark field illumination
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thin film XRD
Identifying the crystallinity of the material coated over the substrate
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Hall Effect measurement system
HMS – 3000 VER 3.51.3
Analyzing the nature of the material coated
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FESEM
Determining the thickness of the film coated over the substrate
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