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Updated: Aug 30, 2025

Close-Space Sublimation-Deposited Ultra-Thin CdSeTe/CdTe Solar Cells for Enhanced Short-Circuit Current Density and Photoluminescence
Published on: March 6, 2020
First-principles investigation on the electronic structures of CdSe S1- and simulation of CdTe solar cell with a
Xu He1,2, Chunxiu Li2,3, Lili Wu2
1Chengdu Textile College Chengdu 611731 China 1304690606@qq.com.
Abstract:
The short-circuit current density (J SC) of CdTe solar cells both in the short and long wavelength regions can be effectively enhanced by using CdS/CdSe as the composite window layer. CdS/CdSe composite layers would interdiffuse to form the CdSe S1- ternary layer during the high temperature deposition process of CdTe films. In this paper, the electronic properties of CdSe S1- (0 ≤ x ≤ 1) ternary alloys are investigated by first-principles calculation based on the density functional theory (DFT) and the performance of CdS/CdSe/CdTe devices are modeled by SCAPS to reveal why CdS/CdSe complex layers have good effects. The calculation results show that the position of the valence band of CdSe S1- moves towards the vacuum level as the doping concentration of Se increases and the band gap becomes narrow. According to device modeling, the highest conversion efficiency of 20.34% could be achieved through adjusting the conduction band offset (CBO) of theCdSe S1- /CdTe interface to about 0.11 eV while the Se concentration x approaches 0.75. Further investigations suggest a 50-120 nm thickness of CdSe S1- (x = 0.75) would obtain better device performance. It means that solar cells with a CdSe S1- /CdTe structure need a suitable Se content and thickness of CdSe S1- . These results can provide theoretical guidance for the design and fabrication of high efficiency CdTe solar cells.

