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  5. Transmission windows of charge transport layers and electrodes in highly transparent organic solar cells for agrivoltaic application

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Article
en
2022

Transmission windows of charge transport layers and electrodes in highly transparent organic solar cells for agrivoltaic application

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en
2022
Vol 2635
Vol. 2635
DOI: 10.1063/5.0103343

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Ulrich Sigmar Schubert
Ulrich Sigmar Schubert

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Rico Meitzner
Aurelien Sokeng Djoumessi
Aman Anand
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Abstract

Organic semiconducting materials provide only narrow absorption bands, in contrast to classical, inorganic semiconductors. Concerning photovoltaic applications this is considered as a drawback; however, in combination with plant cultivation the narrow-band absorption provides a unique advantage: Organic solar cell devices with high transparency between 1.75 and 3.5 eV can be designed, being translucent exactly in the spectral range where chlorophyll is predominantly active in natural photosynthesis. These organic photovoltaic-based agrivoltaics are called "AgrOPV". Common active layer materials already fulfill the requirements for AgrOPV application; the suitability of the other materials used in the photovoltaic layer stack, instead, is hardly investigated and widely uncertain. In order to provide guidance for future developments, we will discuss the suitability of charge transport and electrode materials for AgrOPV applications, mainly on the basis of their absorptance.

How to cite this publication

Rico Meitzner, Aurelien Sokeng Djoumessi, Aman Anand, Chikezie Ugokwe, Anastasia Sichwardt, Xu Zhou, Daria Miliaieva, Jan Čermák, Theo Pflug, Arthur Markus Anton, Shahidul Alam, Štěpán Stehlík, Alexander Horn, Ulrich Sigmar Schubert, Harald Hoppe (2022). Transmission windows of charge transport layers and electrodes in highly transparent organic solar cells for agrivoltaic application. , 2635, DOI: https://doi.org/10.1063/5.0103343.

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Publication Details

Type

Article

Year

2022

Authors

15

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1063/5.0103343

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