Optoelectronic Effects of Copper-Indium-Gallium-Sulfur (CIGS 2 )-Solar Cells Prepared by Three-Stage Co-Evaporation Process Technology.

Tzu-Chien Li,Chia-Wen Chang, Chia-Chun Tai,Jyh-Jier Ho,Tung-Po Hsieh, Yung-Tsung Liu,Tsung-Lin Lu

Micromachines(2023)

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摘要
In this paper, the performance of Cu-(In,Ga)-S (CIGS) solar cells with adjusting composite [Cu]/([Ga] + [In]) (CGI)-ratio absorber was explored and compared through an improved three-stage co-evaporation technique. For co-evaporating CIGS absorber as a less toxic alternative to Cd-containing film, we analyzed the effect of the CGI-ratio stoichiometry and crystallinity, and explored its opto-electric sensing characteristic of individual solar cell. The results of this research signified the potential of high-performance CIGS-absorption solar cells for photovoltaic (PV)-module industrial applications. For the optimal CIGS-absorption film (CGI = 0.95), the Raman main-phase signal (A1) falls at 291 cm, which was excited by the 532 nm line of Ar-laser. Using photo-luminescence (PL) spectroscopy, the corresponding main-peak bandgaps measured was 1.59 eV at the same CGI-ratio film. Meanwhile, the best conversion efficiency ( = 3.212%) and the average external quantum efficiency (EQE = 51.1% in the visible-wavelength region) of photo-electric properties were achieved for the developed CIGS-solar cells (CGI = 0.95). The discoveries of this CIGS-absorption PV research provided a new scientific understanding of solar cells. Moreover, this research undeniably contributes to a major advancement towards practical PV-module applications and can help more to build an eco-friendly community.
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关键词
Cu-(In,Ga)-S<sub>2</sub> (CIGS<sub>2</sub>) solar cells,three-stage co-evaporation technique,[Cu]/([Ga] + [In]) (CGI)-ratio stoichiometry,opto-electric sensing performance,eco-friendly community
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