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- W3100105274 abstract "Organic photovoltaics is based on molecular semiconductors with extended pi-electron systems expanding over the carbon backbone. This can be small to large molecules, fullerenes, oligomers and polymers. These materials offer the possibility to engineer the bandgap of the semiconductor by altering the chemical structure of the molecules. Besides changes in the color, varying from red to yellow over green and blue to purple, this also has technical implications. For indoor applications under artificial light, the optimum bandgap is in the range of 1.9eV, matching the bandgap of a variety of OPV materials. Organic solar cells can be produced by printing and coating in roll-to-roll processes and even by digital inkjet printing, offering fast and cost efficient production and the possibility to print nearly arbitrarily shaped solar cells. The low light intensity and related low device currents open the path to use different materials, device setups and dimensions as compared to full sun applications, where high currents demand a highly effective current collection. On the other hand it raises the requirements for defect free devices with very high values for the parallel resistance. This chapter will discuss these opportunities and challenges from basics to the implementation of indoor optimized OPV devices." @default.
- W3100105274 created "2020-11-23" @default.
- W3100105274 creator A5045879237 @default.
- W3100105274 creator A5085796452 @default.
- W3100105274 date "2020-10-09" @default.
- W3100105274 modified "2023-10-18" @default.
- W3100105274 title "Organic Photovoltaic Cells and Modules for Applications under Indoor Lighting Conditions" @default.
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- W3100105274 doi "https://doi.org/10.1002/9781119605768.ch7" @default.
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