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  4. Dielectric Bragg Reflector as Back Electrode for Semi-transparent Organic Solar Cells with an Average Visible Transparency of 52%
 
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2024
Journal Article
Title

Dielectric Bragg Reflector as Back Electrode for Semi-transparent Organic Solar Cells with an Average Visible Transparency of 52%

Abstract
A crucial challenge in the development of semi-transparent solar cells is to maintain a reasonable power conversion efficiency (PCE) while reaching a high average visible transparency (AVT). Typically, organic semiconductors are favorable for this application since they can selectively absorb infrared light while transmitting visible light. This ability stems from limited electronic states at high(er) energies in contrast to inorganic semiconductors with their typical rise of the absorption coefficient toward higher photon energies. To increase PCE at high AVTs, a series of infrared dielectric Bragg reflectors is developed for semi-transparent organic solar cells. Using the multi-layered back electrode (TiO2|SiN|TiO2|AZO|Ag|AZO) with PV-X Plus as photoactive layer and a metal-free PEDOT:PSS top electrode, a light utilization efficiency (LUE = AVT × PCE) of up to 4.32% is achieved, together with an AVT of 47.9%. Although the short circuit current and AVT agree well with optical simulations, a low fill factor (FF) and partial shunting limit the overall device performance. Using ZnO and PFN-Br as additional electron transport layers and modifying the back electrode stack (TiO2|SiO2|TiO2|AZO|Ag|AZO) accordingly leads to an LUE of up to 4.6% with a remarkable AVT of 51.9% and a maximum PCE of 8.79%.
Author(s)
Pap, Leonie
Fraunhofer-Institut für Solare Energiesysteme ISE  
Schirmacher, Bertolt
Fraunhofer-Institut für Solare Energiesysteme ISE  
Bloch, Esther
Fraunhofer-Institut für Solare Energiesysteme ISE  
Baretzky, Clemens
Fraunhofer-Institut für Solare Energiesysteme ISE  
Zimmermann, Birger  
Fraunhofer-Institut für Solare Energiesysteme ISE  
Würfel, Uli  
Fraunhofer-Institut für Solare Energiesysteme ISE  
Journal
Solar RRL  
Open Access
File(s)
Download (1.27 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.1002/solr.202400399
10.24406/h-477773
Additional link
Full text
Language
English
Fraunhofer-Institut für Solare Energiesysteme ISE  
Keyword(s)
  • infrared mirror

  • light utilization efficiency

  • Optical modeling

  • reflecting back electrode

  • Semi-transparent organic solar cells

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