4.6 Article

Efficient Light Management by Textured Nanoimprinted Layers for Perovskite Solar Cells

期刊

ACS PHOTONICS
卷 4, 期 5, 页码 1232-1239

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsphotonics.7b00138

关键词

perovskite solar cells; antireflection; light management; UV nanoimprint lithography; optical simulations

资金

  1. Slovenian Research Agency [P2-0197]
  2. Slovenian Human Resources Development and Scholarship Fund
  3. German Federal Ministry of Education and Research (BMBF) within the research initiative Materialfor-schung fur die Energiewende [03SF0540]
  4. German Federal Ministry for Economic Affairs and Energy (BMWi) through the PersiST project [0324037C]
  5. Bavarian Ministry for Economics, Media, Energy and Technology through the joint project Hi-ERN

向作者/读者索取更多资源

Inorganic-organic perovskites like methylammonium-lead-iodide have proven to be an effective class of 17 materials for fabricating efficient solar cells. To improve their performance, light management techniques using textured surfaces, similar to those used in established solar cell technologies, should be considered. Here, we apply a light management foil created by UV nanoimprint lithography on the glass side of an inverted (p-i-n) perovskite solar cell with 16.3% efficiency. The obtained 1 mA cm(-2) increase in the short-circuit current density translates to a relative improvement in cell performance of 5%, which results in a power conversion efficiency of 17.1%. Optical 3D simulations based on experimentally obtained parameters were used to support the experimental findings. A good match between the simulated and experimental data was obtained, validating the model. Optical simulations reveal that the main improvement in device performance is due to a reduction in total reflection and that relative improvement in the short-circuit current density of up to 10% is possible for large-area devices. Therefore, our results present the potential of light management foils for improving the device performance of perovskite solar cells and pave the way for further use of optical simulations in the field of perovskite solar cells.

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