H2020Individual fellowship2015–2017

TADFORCE · Strengthening and survey beyond the knowledge of the TADF emitters as materials for superefficient OLED devices

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2015-05-01 → 2017-04-30
EU contribution
€195,455
Participants
1
Scheme
MSCA-IF-EF-ST

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Results in brief

Strengthening and survey beyond the knowledge of the TADF emitters as materials for superefficient OLED devices

The OLED worldwide market is growing rapidly and Europe needs experts possessing a comprehensive knowledge and practical experience in this technology. OLED technology is used in small devices such as smart phones and tablets but also in high-end TVs and lighting, as OLEDs are still relatively expensive compared to LCD. But with research progressing towards lower cost and longer lifetime, together with a growing trend to use flexible displays in smartphones etc., the OLED market is growing fast. Europe is a huge supplier of the materials for OLED displays, taking into account that electronic market is changing very fast and companies are searching for new cheaper materials the input of research in this area is needed. The flexible OLED display market is predicted to quadruple next year, with predicted global market revenue for flexible OLEDs to increase from $21.9 million in 2013 to $12 billion by 2020 and this project will help to maintain Europe place as a major supplier of OLED materials. The high demand for flexible OLEDs will increase the need for very expensive and rare iridium. The TADFORCE project aims to explore exciplex emitters and thermally activated delayed fluorescence (TADF) in OLEDs i) to replace currently used Ir complexes, and ii) to show how to easily tune emitter, resulting in reduced production cost, especially blue, where Ir-based emitters fail. The main research goal of the multi-disciplinary TADFORCE project is to explore CT and exciplex emitters and their application in OLED devices by training Experienced Researcher through joint research in chemical, physical and material science in both academia and industry. The ER will gain experience in conducting research in a multidisciplinary environment to produce important data in this new OLED field to enable the development, modeling, and tailoring of TADF OLED devices, which are at the forefront of new OLED research and development.

Data: CORDIS, © European Union

Project objective

The OLED worldwide market is growing rapidly and Europe needs experts possessing a comprehensive knowledge and practical experience in this technology. OLED technology is used in small devices such as smart phones and tablets but also in high-end TVs and lighting, as OLEDs are still relatively expensive compared to LCD. But with research progressing towards lower cost and longer lifetime, together with a growing trend to use flexible displays in smartphones etc., the OLED market is growing fast. Europe is a huge supplier of the materials for OLED displays, taking in to account that electronic market is changing very fast and companies are search for new cheaper materials the input of research in this area is needed. The flexible OLED display market is predicted to quadruple next year, with predicted global market revenue for flexible OLEDs to increase from $21.9 million in 2013 to $12 billion by 2020 and this project will help to maintain Europe place as a major supplier of OLED materials.The high demand for flexible OLEDs will increase the need for very expensive and rare iridium. The TADFORCE project aims to explore exciplex emitters and thermally activated delayed fluorescence (TADF) in OLEDs i) to replace currently used Ir complexes, and ii) to show how to easily tune emitter, resulting in reduced production cost, especially blue, where Ir based emitters fails.The main research goal of the multi-disciplinary TADFORCE project is to explore CT and exciplex emitters and their application in OLED devices by training Experienced Researcher through joint research in chemical, physical and material science in both academia and industry.The ER will gain experience in conducting research in a multidisciplinary environment to produce important data in this new OLED field to enable the development, modeling and tailoring of TADF OLED devices, which are at the forefront of new OLED research and development.

Original text from CORDIS.

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Data: CORDIS, © European Union