吉林大学学报(信息科学版) ›› 2019, Vol. 37 ›› Issue (4): 366-371.

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多光学间隔层结构的聚合物太阳能电池

董卓,陈永森   

  1. 中国船舶重工集团公司第七二三研究所,江苏扬州225101
  • 出版日期:2019-07-24 发布日期:2019-12-16
  • 作者简介:董卓( 1993— ) ,男,吉林梅河口人,中国船舶重工集团公司第七二三研究所助理工程师,( Tel) 86-15948016804( E-mail)15948016804@163. com。

Polymer Solar Cells with Multiple Optical Spacers

DONG Zhuo,CHEN Yongsen   

  1. No. 723 Research Institute,China Shipbuilding Industry Corporation,Yangzhou 225101,China
  • Online:2019-07-24 Published:2019-12-16

摘要: 为提高聚合物太阳能电池中有源层的光吸收,提出了一种新型结构的器件———具有多光学间隔层结构的
聚合物太阳能电池,该结构通过调节多光学间隔层折射率的分布方式,调节有源层内光电场的分布,使有源层
对入射光得到充分吸收,进而优化器件性能。采用传输矩阵法对这种多光学间隔层聚合物太阳能电池进行了
光学模拟,探索了多光学间隔层折射率的分布方式对倒置结构聚合物太阳能电池器件有源层光电场的分布和
短路电流密度( Jsc) 的影响。模拟选取的多光学间隔层是通过在ITO( Indium Tin Oxide) 玻璃衬底上依次旋涂未
掺杂ZnO 和掺杂浓度分别为0. 002 5 mol /L,0. 005 mol /L,0. 01 mol /L 的铯掺杂氧化锌( CZO: Cs doped Zinc
Oxide) 薄膜制备而成的。模拟结果显示,采用从上到下铯掺杂浓度依次增加的多光学间隔层结构能有效提高
器件有源层对入射光的光吸收和短路电流密度。

关键词: 聚合物太阳能电池, 多光学间隔层, 铯掺杂氧化锌, 短路电流密度, 传输矩阵法

Abstract: In order to improve the optical absorption of active layer in polymer solar cells,a PSC ( Polymer Solar
Cell) with multiple optical spacers is proposed. By adjusting the refractive index distribution of multiple optical
spacers to change the distribution of incident light in the active layer,enhance the absorption of the active layer
and improve the performance of the device. Further,we use the transfer matrix method to calculate the device and
explore the influence of a PSC with multiple optical spacers consisting of undoped ZnO film and CZO ( Cs doped
Zinc Oxide) films with different doping concentration of 0. 002 5 mol /L,0. 005 mol /L and 0. 01 mol /L to the
distribution of light field and short circuit current. The simulation results show that the multiple optical spacers
provide a cascade of refractive index between the ITO ( Indium Tin Oxide) substrate and the active layer when the
CZO films with a decreasing doping concentration is deposited on ITO successively,resulting in an increase of light
absorption in active layer and Jsc significantly.

Key words: polymer solar cells, optical spacers, cs doped zinc oxide, short circuit current density, transfer matrix method

中图分类号: 

  • TN256