MEGA · Heavy metal free emitters for new-generation light sources
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2019-01-01 → 2023-12-31
- EU contribution
- €1,614,600
- Participants
- 16
- Scheme
- MSCA-RISE
Lines connect the coordinator with its partners. CORDIS does not always give exact coordinates for projects before 2014. These points are placed at city or country level.
Results in brief
Heavy metal free emitters for new-generation light sources
Organic heavy metal free fluorescent materials show exceptional potential for use in new-generation light sources, such as organic light-emitting devices (OLEDs) and organic lasers. It is anticipated that these new materials will enable organic electronic devices to be constructed with higher efficiency, simpler device structures, lower fabrication costs, and reduced environmental impact. Amongst the different types of materials currently being investigated, two show particular promise: • Fluorescence materials exhibiting thermally activated delayed fluorescence (TADF) for use in OLEDs in displays and lighting devices. • Fluorescent materials with low thresholds for amplified spontaneous emission (ASE) for use in organic lasers in spectroscopy and telecommunication. However, in order to develop these materials for commercial industrial use, several challenges still remain to be overcome, including: • Theories explaining TADF and ASE are still in their infancy. • Organic material samples need to be extremely pure (>99.5%). Consequently, new synthesis routes need to be developed. • TADF emitters for OLEDs have lifetimes that fall well short of industry requirements. • Fluorescence emitters for lasers need high available optical gain, solution processability and narrow emission spectra with high efficiency. • Properties of TADF and lasing materials are very sensitive to structural changes. Thus, the overall goal of the MEGA project was to help develop organic heavy metal free fluorescent materials for commercial use by tackling these challenges. In order to develop the new materials, the following scientific and technical objectives will be targeted: • Objective 1: Screen compounds with TADF or lasing properties by means of molecular modelling. • Objective 2: Synthesise most promising compounds with TADF or lasing properties. • Objective 3: Characterise most promising compounds with TADF or lasing properties. • Objective 4: Test materials in device structures to meet industry requirement.
Data: CORDIS, © European Union
Project objective
Organic heavy metal free fluorescent materials show exceptional potential for use in new-generation light sources, such as organic light-emitting devices (OLEDs) and organic lasers. It is anticipated that these new materials will enable organic electronic devices to be constructed with higher efficiency, simpler device structures, lower fabrication costs, and reduced environmental impact.Amongst the different types of materials currently being investigated, two show particular promise:• Fluorescence materials exhibiting thermally activated delayed fluorescence (TADF) for use in OLEDs in displays and lighting devices .• Fluorescent materials with low thresholds for amplified spontaneous emission (ASE) for use in organic lasers in spectroscopy and telecommunication .However, in order to develop these materials for commercial industrial use, several challenges still remain to be overcome, including:• Theories explaining TADF and ASE are still in their infancy.• Organic material samples need to be extremely pure (>99.5%). Consequently, new synthesis routes need to be developed.• TADF emitters for OLEDs have lifetimes that fall well short of industry requirements.• Fluorescence emitters for lasers need high available optical gain, solution processability and narrow emission spectra with high efficiency.• Properties of TADF and lasing materials are very sensitive to structural changes.Thus, the overall goal of the MEGA project is to help develop organic heavy metal free fluorescent materials for commercial use by tackling these challenges. In order to develop the new materials, the following S&T objectives will be targeted:• Objective 1: Screen compounds with TADF or lasing properties by means of molecular modelling• Objective 2: Synthesise most promising compounds with TADF or lasing properties• Objective 3: Characterise most promising compounds with TADF or lasing properties• Objective 4: Test materials in device structures to meet industry requirement
Original text from CORDIS.
Participants
- KAUNO TECHNOLOGIJOS UNIVERSITETAS · KaunasCoordinatorLithuania
- BELARUSIAN STATE UNIVERSITY THE RESEARCH INSTITUTE OF PHYSICAL CHEMICAL PROBLEMS · MINSKCity levelBelarus
- CREAPHYS GMBH · DRESDENGermany
- CY CERGY PARIS UNIVERSITE · Cergy-PontoiseFrance
- CYNORA GMBH · BRUCHSALGermany
- INTELLIGENTSIA CONSULTANTS SARL · BERTRANGELuxembourg
- LABKICOSMOS · Villeneuve-D'AscqFrance
- LVIV POLYTECHNIC NATIONAL UNIVERSITY · LvivUkraine
- NATIONAL TAIWAN UNIVERSITY · TaipeiTaiwan
- SCIENTIFIC RESEARCH COMPANY ELECTRON-CARAT BRANCH OF PRIVATE JOINT STOCK COMPANY CONCERN-ELECTRON · LvivUkraine
- TECHNISCHE UNIVERSITAET DRESDEN · DresdenGermany
- UAB FEMTIKA · VILNIUSLithuania
- UAB NANOVERSA · KaunasLithuania
- UNIVERSITY OF GLASGOW · GlasgowUnited Kingdom
- UNIVERSITY OF MALAYA · Kuala LumpurMalaysia
- YEREVAN STATE UNIVERSITY FOUNDATION · YerevanArmenia
Links
- View on CORDIS
- DOI: 10.3030/823720
- http://www.h2020-mega.eu
- https://ec.europa.eu/research/participants/documents/downloadPublic?documentIds=080166e5c3b169a8&appId=PPGMS
Data: CORDIS, © European Union
