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January 18, 2026Advanced Energy Materials0 citationsOpen Access

Accelerating the Development of Organic Solar Cells: A Standardized Protocol with Machine Learning Integration

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JWJonas WortmannLLLarry LuerCLChao Liu

Key Points

  • The aim is to develop a standardized protocol to enhance the efficiency and stability of organic solar cells using machine learning and systematic approaches.
  • Developed a holistic screening protocol for OPV materials.
  • Integrated machine learning techniques with experimental protocols.
  • Conducted a combinatorial degradation protocol to test stress factors such as temperature and illumination.
  • Tested various device architectures including conventional, inverted, hole-only, and electron-only configurations.
  • Performed solvent tests to evaluate processability with green solvents.
  • Identified key stress factors affecting OPV material stability.
  • Established a reliable benchmark for process stability based on systematic data.
  • Predicted structure-property relationships for novel semiconductor materials.

Abstract

ABSTRACT Organic Photovoltaic (OPV) devices show a large gap between laboratory‐recorded cells with over 20% efficiency and commercial roll‐to‐roll printed modules reaching a maximum half that efficiency. A novel OPV material not only needs high efficiency, but must be processable in architectures suited for large‐scale applications and provide sufficient stability under various stress factors. We present a holistic screening protocol to cover all relevant aspects of OPV material development. Using machine learning techniques together with systematic experimental protocols, only a minimum amount of a novel semiconductor is necessary. We utilize process parameters, optical features, and IV data to explore the processing window, benchmark process stability, and enable structure‐property predictions. We implement a combinatorial degradation protocol that investigates key stress factors, like temperature, oxygen, and illumination, at different stages of device fabrication. Testing partially finished devices, conventional and inverted architectures, as well as hole‐only and electron‐only devices, enables the identification of individual layers responsible for degradation. The protocol includes a solvent test to investigate processability with green solvents. The systematic data collected in this protocol provides a general and reliable basis for material development and the imminent creation of digital twins for OPV.

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Cite This Study

Wortmann et al. (2026) studied this question.

synapsesocial.com/papers/696c7835eb60fb80d1396793https://doi.org/10.1002/aenm.202506139
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