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CIGSe thin-film solar cells: EU Sharc25 project increases efficiency
by Staff Writers
Berlin, Germany (SPX) Feb 07, 2020

Research on the EU project Sharc25 also took place in the EMIL laboratory, where thin films and materials can be analyzed with X-rays from BESSY II.

Producing thin-film solar modules requires much less energy than conventional wafer-based Si PV modules, and therefore their energy payback time is much shorter. Chalcopyrite-structured compounds of copper, indium, gallium, and selenium (CIGSe) are an important class of materials for thin-film PV, because CIGSe absorbs incident light much better than silicon, and so a very thin layer grown on a substrate via coevaporation suffices to convert light into electrical energy efficiently.

Efficiency up to 22,6 percent
The European Sharc25 research project approached the challenge of optimizing the conversion efficiency of CIGSe thin film technology from multiple angles, combining theoretical modelling, experimental characterization, and sharing of technological expertise between several leading research groups throughout Europe.

During the project, the efficiency of CIGSe solar cells produced within the consortium rose from 21.7 to 22.6 percent.

One focus of the project was to understand the positive effects of post-processing with the alkali elements potassium, rubidium, and cesium. This post-processing changes the chemical and electronic surface properties of the CIGSe absorber.

In addition, the alkali atoms migrate from the surface into the grain boundaries between the CIGSe grains, which improves the electronic properties of the thin film. The recombination of charge carriers in the bulk CIGSe is reduced, among other effects. This beneficial effect is observed for CIGSe layers prepared at various temperatures and on different substrates.

Know-how for European industries
Eleven research institutions from eight countries, including an HZB team headed by Prof. Marcus Bar, collaborated on the EU Sharc25 project. An important goal was to secure Europe's pioneering role in the field of thin-film PV.

"It is certainly a competitive advantage to be able to address questions related to applied materials research and to the development of industry-oriented devices using advanced research tools. To do so efficiently, we learn in such large EU projects. This represents a significant advantage and preserves the crucial edge in knowledge and know-how", says Bar.

Research Report: Heavy alkali treatment of Cu(In,Ga)Se2 solar cells: Surface versus bulk effects


Related Links
Helmholtz-Zentrum Berlin FUr Materialien Und Energie
All About Solar Energy at SolarDaily.com


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SOLAR DAILY
Regioselective functionalization of perylenes reduces voltage loss in organic solar cells
Tokyo, Japan (SPX) Feb 07, 2020
The power conversion efficiencies of organic solar cells (OSCs) based on blends of electron donor (D) and acceptor (A) semiconducting materials now exceed 16%. However, it is still lower than that of highly efficient inorganic SCs such as GaAs and perovskite. The charge generation efficiency in OSCs nowadays is nearly 100%, thus reducing the energy loss in output voltage is critically important for further enhancing the efficiency of OSCs. Group of Assistant Professor Seiichiro Izawa and Profes ... read more

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