研究目的
To analyze and develop efficient CBD grown heterojunction based SWIR sensitive detectors and solar cells, focusing on the role of CdS doping in improving SWIR photovoltaic and photoconductive responses in solution grown CdS/PbS heterojunctions.
研究成果
The study revealed that the n-type CdS doping level significantly affects the photo-response of CBD grown CdS/PbS NDs heterojunction-based SWIR detectors. High n-doping of the CdS layer allows for electron injection by tunneling, leading to a PV current at zero bias. The findings are important for the development of both photodetectors and solar cells based on narrow bandgap QC layers in conjugation with broad bandgap layers.
研究不足
The study focuses on the role of CdS doping level in the performance of CdS/PbS heterojunctions for SWIR detection. Limitations include the need for further optimization of the PbS NDs layer's thickness and the exploration of the confinement phenomenon in PbS NDs layers grown by the CBD technique.
1:Experimental Design and Method Selection:
The study utilized Chemical Bath Deposition (CBD) technique to fabricate layers of p-type, quantum confined (QC) PbS nano-domains (NDs) on two different n-type CdS intermediate layers grown on Fluoride Tin Oxide (FTO) substrates. Two different CBD protocols were used for the CdS layers.
2:Sample Selection and Data Sources:
QC-PbS NDs layers were grown on glass/FTO/CdS substrates with two different CBD growth procedures of CdS, forming CdS-1 and CdS-2 layers.
3:List of Experimental Equipment and Materials:
Equipment included a Hewlett-Packard parameter analyzer for I-V measurements, a Bruker VERTEX-80V Fourier Transform Infra-Red (FTIR) spectrometer for optical characterizations, and a Kelvin probe for SPV measurements. Materials included cadmium nitrate, sodium citrate, ammonia, Thiourea, and others for the CBD processes.
4:Experimental Procedures and Operational Workflow:
The CBD growth procedures for the two types of CdS layers and the QC-PbS NDs layer were detailed, including cleaning procedures, immersion times, and temperatures. Gold circular top ohmic contacts were evaporated on the QC-PbS side surface for I-V measurements.
5:Data Analysis Methods:
Current-voltage (I-V) measurements under dark and illuminated conditions, photoluminescence (PL) and optical absorption measurements, SPV measurements, and Hall Effect measurements were performed to analyze the electrical and optical properties of the heterojunctions.
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