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The Influence of Heating Time and Temperature on the Properties of CIGSSe Solar Cells

机译:加热时间和温度对CIGSSE太阳能电池性能的影响

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Nonencapsulated CIGSSe solar cells, with a silver grid, were exposed to different temperatures for various periods in order to measure the effect of the heat exposure in CIGSSe modules. The heat treatment time and temperature were varied during the experiments, which were executed at atmospheric conditions. In all the cases, after reaching a temperature of about 300 degrees C, the IV measurement showed a reduction of 2-3% in terms of V-OC and J(SC). This is confirmed, respectively, by Raman and EQE measurements as well. The efficiency drop was -7%, -29%, and -48%, respectively, for 30 seconds, 300 seconds, and 600 seconds of exposure time. With temperatures larger than 225 degrees C, the series resistance starts to increase exponentially and a secondary barrier becomes visible in the IV curve. This barrier prevents the extraction of electrons and consequently reducing the solar cells efficiency. Lock-in thermography demonstrated the formation of shunts on the mechanical scribes only for 300 and 600 seconds exposure times. The shunt resistance reduction is in the range of 5% for all time periods.
机译:具有银网的不封装的CiGSSE太阳能电池暴露于各种时段的不同温度,以测量钙体模块中的热暴露的效果。在实验期间,热处理时间和温度在大气条件下执行。在所有情况下,在达到约300摄氏度的温度后,IV测量表明V-OC和J(SC)方面的减少2-3%。这也通过拉曼和EQE测量来确认。效率下降分别为-7%,-29%和-48%,30秒,300秒和600秒的曝光时间。温度大于225℃,串联电阻开始呈指数增长,并且在IV曲线中可见二次屏障。该屏障防止了电子提取并因此降低了太阳能电池的效率。锁定热成像表明,在机械划线上仅形成了300和600秒的曝光时间。所有时间段的分流阻力降低在5%的范围内。

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