加速热循环和湿热暴露下CZTS薄膜太阳能电池的稳定性

Chien-Yi Peng, T. Dhakal, Amin Emrani, Susan S. Lu, C. Westgate
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引用次数: 6

摘要

近十年来,Cu2ZnSnS4 (CZTS)薄膜太阳能电池引起了科学界和经济界的广泛关注。本研究采用加速热循环和湿热试验来考察两种TCO材料涂层的CZTS薄膜太阳能电池的稳定性。结果表明,在加速热循环试验中,ZnO和ITO复合的CZTS太阳能电池耐久性优于ZnO和AZO复合的CZTS太阳能电池。结果还表明,与溅射技术相比,ALD技术沉积的ZnO和AZO并没有提高CZTS太阳能电池的稳定性。在湿热实验中,结果表明ALD技术沉积的ITO裸露薄膜和AZO薄膜在吸湿方面具有良好的耐久性。经过湿热测试后,未经退火的射频溅射沉积的AZO薄膜的电性能较差。然而,有ITO层的电池在湿热测试后并没有保持良好的性能,这可能是由于ITO薄膜厚度较小。虽然ALD技术制备的AZO薄膜比RF溅射制备的AZO薄膜具有更好的耐久性,但ALD技术制备的ZnO和AZO薄膜的耐久性并不比RF溅射制备的ZnO和AZO薄膜好多少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability of CZTS thin film solar cells upon accelerated thermal cycling and damp heat exposure
Cu2ZnSnS4 (CZTS) thin film solar cells have attracted scientific and economic interest in the last decade. In this study, accelerated thermal cycling and damp heat tests are used to examine the stability of CZTS thin film solar cells, which are coated with two TCO materials. From the results, the CZTS solar cells with ZnO and ITO perform better durability than the one with ZnO and AZO under the accelerated thermal cycling test. The result also indicates that the ZnO and AZO deposited by using atomic layer deposition (ALD) technique does not improve the stability for CZTS solar cells comparing to the sputtering technique. In the damp heat experiment, the results show that the bare ITO thin films and AZO thin films deposited by the ALD technique have a good durability with regard to the moisture ingress. The AZO thin films deposited by RF sputtering without annealing have a worse performance with regard to electrical properties after the damp heat test. However, the cells with an ITO layer do not sustain a good performance after the damp heat test, which could be attributed smaller thickness of the ITO thin films. Although the AZO thin films using the ALD technique have better durability than the ones using the RF sputtering, the cells coated with the ZnO and AZO by the ALD technique are not much better than the cells coated with the ZnO and AZO by the RF sputtering.
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