Dielectric barrier discharge jet processed TiO2 nanoparticle layer for flexible perovskite solar cells

被引:6
|
作者
Mallela, Mohana Sruthi [1 ]
Tsai, Jui-Hsuan [2 ,3 ]
Huang, Jian-Zhi [1 ]
Hsu, Cheng-Che [4 ]
Chen, Mei-Hsin [5 ]
Wu, Chih-, I [1 ,6 ]
Chen, Jian-Zhang [2 ,3 ]
Cheng, I-Chun [1 ,6 ]
机构
[1] Natl Taiwan Univ, Grad Inst Photon & Optoelect, Taipei, Taiwan
[2] Natl Taiwan Univ, Grad Inst Appl Mech, Taipei, Taiwan
[3] Natl Taiwan Univ, Adv Res Ctr Green Mat Sci & Technol, Taipei, Taiwan
[4] Natl Taiwan Univ, Dept Chem Engn, Taipei, Taiwan
[5] Natl Taipei Univ Technol, Dept Electroopt Engn, Taipei, Taiwan
[6] Natl Taiwan Univ, Dept Elect Engn, Taipei, Taiwan
关键词
atmospheric pressure plasma; dielectric barrier discharge; TiO2; nanoparticle; flexible perovskite solar cell; EFFICIENT; PERFORMANCE; FILM;
D O I
10.1088/1361-6463/ac2bcd
中图分类号
O59 [应用物理学];
学科分类号
摘要
For attaining good-performance perovskite solar cells (PSCs), the carrier collection from the perovskite material to the transport layer plays a prominent role; herein, we demonstrate an atmospheric pressure plasma treatment technique to enhance the interface properties between the active perovskite layer and electron transport layer (ETL). A scan-mode low-temperature helium dielectric barrier discharge (DBD) jet is applied to process the TiO2 nanoparticle layers for the flexible n-i-p PSCs made on ITO-coated polyethylene naphthalate substrates. When the surface of TiO2 nanoparticle ETL is treated by the DBD jet at a scan rate of 2 cm s(-1) and scan height of 5 cm by ten times, the photoelectrical conversion efficiency of the cell is enhanced from 12.30% to 13.66%. The performance improvement can be attributed to the increase of hydrophilic O-C = O functional groups on the surface of the TiO2 nanoparticle layer and the reduction of charge transfer resistance of the cell revealed by x-ray photoelectron spectroscopy and electrochemical impedance spectroscopy, respectively. The results show that the low-temperature DBD jet treatment is a promising technique for processing flexible photovoltaic devices.
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页数:6
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