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用于铜铟镓硒(Cu(In,Ga)Se2)太阳能电池的电子选择性二氧化钛接触层

Electron-Selective TiO2 Contact for Cu(In,Ga)Se2 Solar Cells.

作者信息

Hsu Weitse, Sutter-Fella Carolin M, Hettick Mark, Cheng Lungteng, Chan Shengwen, Chen Yunfeng, Zeng Yuping, Zheng Maxwell, Wang Hsin-Ping, Chiang Chien-Chih, Javey Ali

机构信息

Electrical Engineering and Computer Sciences Department, University of California, Berkeley, CA 94720.

Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720.

出版信息

Sci Rep. 2015 Nov 3;5:16028. doi: 10.1038/srep16028.

Abstract

The non-toxic and wide bandgap material TiO2 is explored as an n-type buffer layer on p-type Cu(In,Ga)Se2 (CIGS) absorber layer for thin film solar cells. The amorphous TiO2 thin film deposited by atomic layer deposition process at low temperatures shows conformal coverage on the CIGS absorber layer. Solar cells from non-vacuum deposited CIGS absorbers with TiO2 buffer layer result in a high short-circuit current density of 38.9 mA/cm(2) as compared to 36.9 mA/cm(2) measured in the reference cell with CdS buffer layer, without compromising open-circuit voltage. The significant photocurrent gain, mainly in the UV part of the spectrum, can be attributed to the low parasitic absorption loss in the ultrathin TiO2 layer (~10 nm) with a larger bandgap of 3.4 eV compared to 2.4 eV of the traditionally used CdS. Overall the solar cell conversion efficiency was improved from 9.5% to 9.9% by substituting the CdS by TiO2 on an active cell area of 10.5 mm(2). Optimized TiO2/CIGS solar cells show excellent long-term stability. The results imply that TiO2 is a promising buffer layer material for CIGS solar cells, avoiding the toxic CdS buffer layer with added performance advantage.

摘要

无毒且宽带隙的材料二氧化钛(TiO₂)被用作薄膜太阳能电池p型铜铟镓硒(Cu(In,Ga)Se₂,CIGS)吸收层上的n型缓冲层进行研究。通过原子层沉积工艺在低温下沉积的非晶态TiO₂薄膜在CIGS吸收层上呈现出保形覆盖。具有TiO₂缓冲层的非真空沉积CIGS吸收层制成的太阳能电池,其短路电流密度高达38.9 mA/cm²,而在具有CdS缓冲层的参考电池中测得的短路电流密度为36.9 mA/cm²,同时开路电压并未降低。显著的光电流增益,主要在光谱的紫外部分,可归因于超薄TiO₂层(约10 nm)中较低的寄生吸收损耗,该层的带隙为3.4 eV,大于传统使用的CdS的2.4 eV。总体而言,在10.5 mm²的有源电池面积上用TiO₂替代CdS后,太阳能电池的转换效率从9.5%提高到了9.9%。优化后的TiO₂/CIGS太阳能电池显示出优异的长期稳定性。这些结果表明,TiO₂是一种有前景的CIGS太阳能电池缓冲层材料,既能避免有毒的CdS缓冲层,又具有额外的性能优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b737/4630620/99d8138e2e31/srep16028-f1.jpg

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