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Enhancing light absorption for organic solar cells using front ITO nanograting and back ultrathin Al layer

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【作者】 张力刘卫宁王艳周刘奇明栗军帅李亚丽贺德衍

【Author】 Li Zhang;Wei-Ning Liu;Yan-Zhou Wang;Qi-Ming Liu;Jun-Shuai Li;Ya-Li Li;De-Yan He;Key Laboratory of Special Function Materials & Structure Design of the Ministry of Education,Lanzhou University;School of Physical Science & Technology, Lanzhou University;School of Materials & Energy, Lanzhou University;

【通讯作者】 栗军帅;李亚丽;

【机构】 Key Laboratory of Special Function Materials & Structure Design of the Ministry of Education,Lanzhou UniversitySchool of Physical Science & Technology, Lanzhou UniversitySchool of Materials & Energy, Lanzhou University

【摘要】 To address the discrepancy between carrier collection and light absorption of organic solar cells caused by the limited carrier mobility and optical absorption coefficient for the normally employed organic photoactive layers, a light management structure composed of a front indium tin oxide(ITO) nanograting and ultrathin Al layer inserted in between the photoactive layer and the electron transport layer(ETL) is introduced. Owing to the antireflection and light scattering induced by the ITO nanograting and the suppression of light absorption in the ETL by the inserted Al layer, the light absorption of the photoactive layer is significantly enhanced in a spectral range from 400 nm to 650 nm that also covers the main energy region of solar irradiation for the normally employed active materials such as the P3HT:PC61 BM blend. The simulation results indicate that comparing with the control device with a planar configuration of ITO/PEDOT:PSS/P3HT:PC61 BM(80-nm thick)/Zn O/Al, the short-circuit current density and power conversion efficiency of the optimized light management structure can be improved by 32.86% and 34.46%. Moreover, good omnidirectional light management is observed for the proposed device structure. Owing to the fact that the light management structure possesses the simple structure and excellent performance, the exploration of such a structure can be believed to be significant in fabricating the thin film-based optoelectronic devices.

【Abstract】 To address the discrepancy between carrier collection and light absorption of organic solar cells caused by the limited carrier mobility and optical absorption coefficient for the normally employed organic photoactive layers, a light management structure composed of a front indium tin oxide(ITO) nanograting and ultrathin Al layer inserted in between the photoactive layer and the electron transport layer(ETL) is introduced. Owing to the antireflection and light scattering induced by the ITO nanograting and the suppression of light absorption in the ETL by the inserted Al layer, the light absorption of the photoactive layer is significantly enhanced in a spectral range from 400 nm to 650 nm that also covers the main energy region of solar irradiation for the normally employed active materials such as the P3HT:PC61 BM blend. The simulation results indicate that comparing with the control device with a planar configuration of ITO/PEDOT:PSS/P3HT:PC61 BM(80-nm thick)/Zn O/Al, the short-circuit current density and power conversion efficiency of the optimized light management structure can be improved by 32.86% and 34.46%. Moreover, good omnidirectional light management is observed for the proposed device structure. Owing to the fact that the light management structure possesses the simple structure and excellent performance, the exploration of such a structure can be believed to be significant in fabricating the thin film-based optoelectronic devices.

【基金】 Project supported by the Natural Science Foundation of Gansu Province,China (Grant No. 20JR10RA611);the Fundamental Research Funds for Central Universities,China (Grant Nos. lzujbky-2017-178 and lzujbky-2017-181)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2021年10期
  • 【分类号】TM914.4;TB383.1
  • 【被引频次】1
  • 【下载频次】30
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