Lai Fang-I, Yang Jui-Fu, Liao Wei-Xiang, Kuo Shou-Yi
Department of Photonics Engineering, Yuan-Ze University, 135 Yuan-Tung Road, Chung-Li, 320, Taiwan.
Advanced Optoelectronic Technology Center, National Cheng-Kung University, Tainan, 701, Taiwan.
Sci Rep. 2017 Nov 2;7(1):14927. doi: 10.1038/s41598-017-14899-4.
This paper presents the use of nanorods of different sizes, deposited from a chemical solution, as an antireflection layer in copper-zinc-tin selenide (CZTSe) solar cells. With the aid of the nanorods, the surface reflection of the CZTSe solar cells was reduced from 7.76% to 2.97%, and a cell efficiency of 14% was obtained as a result. Omni-directional anti-reflection was verified by the angle-dependent reflection measurements. The nanorod arrays also provided the CZTSe solar cells with a hydrophobic surface, allowing it to exhibit high resistance against humidity during weatherability tests. This shows that the surface passivation brought by the nanorod layer at the surface could effectively extend the lifetime of the CZTSe solar cells. The rate of efficiency decay of the CZTSe solar cells was reduced by 46.85% from that of the device without a nanorod array at the surface, indicating that this surface layer not only provided effective resistance against reflection at the device surface, but also served as a passivation layer and humidity-resistant surface-protection layer.
本文介绍了使用通过化学溶液沉积的不同尺寸的纳米棒作为铜锌锡硒(CZTSe)太阳能电池的抗反射层。借助这些纳米棒,CZTSe太阳能电池的表面反射率从7.76%降低到2.97%,结果获得了14%的电池效率。通过角度相关反射测量验证了全向抗反射。纳米棒阵列还赋予CZTSe太阳能电池疏水表面,使其在耐候性测试中表现出高耐湿性。这表明纳米棒层在表面带来的表面钝化可以有效地延长CZTSe太阳能电池的寿命。CZTSe太阳能电池的效率衰减率比表面没有纳米棒阵列的器件降低了46.85%,表明该表面层不仅在器件表面提供了有效的抗反射能力,还起到了钝化层和耐湿表面保护层的作用。