Coordinatore | NEDERLANDSE ORGANISATIE VOOR TOEGEPAST NATUURWETENSCHAPPELIJK ONDERZOEK TNO
Organization address
address: Schoemakerstraat 97 contact info |
Nazionalità Coordinatore | Netherlands [NL] |
Totale costo | 2˙158˙674 € |
EC contributo | 1˙499˙899 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2011-EU-RUSSIA |
Funding Scheme | CP-FP |
Anno di inizio | 2011 |
Periodo (anno-mese-giorno) | 2011-10-15 - 2014-04-14 |
# | ||||
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1 |
NEDERLANDSE ORGANISATIE VOOR TOEGEPAST NATUURWETENSCHAPPELIJK ONDERZOEK TNO
Organization address
address: Schoemakerstraat 97 contact info |
NL (DEN HAAG) | coordinator | 594˙863.00 |
2 |
PHILIPS TECHNOLOGIE GMBH
Organization address
address: LUEBECKERTORDAM 5 contact info |
DE (HAMBURG) | participant | 333˙900.00 |
3 |
FLUXIM AG
Organization address
address: DORFSTRASSE 7 contact info |
CH (FEUSISBERG) | participant | 260˙800.00 |
4 |
JCMWAVE GMBH
Organization address
address: BOLIVARALLEE 22 contact info |
DE (BERLIN) | participant | 183˙560.00 |
5 |
ZURCHER HOCHSCHULE FUR ANGEWANDTE WISSENSCHAFTEN
Organization address
address: GERTRUDSTRASSE 15 contact info |
CH (WINTERTHUR) | participant | 126˙776.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'OLED lighting holds the promise of entering the annual global lighting-fixture market that is estimated between $US 50-90 billion. OLED technology provide an environmentally friendly technology that requires no mercury and can enable energy savings up to 90 % (per lamp socket). Global transition to such efficient lighting sources will dramatically reduce energy. Since the onset of the solid state lighting initiative towards the end of last century, the advance in OLED technology has been accelerated by a world-wide investment in material science, process technology, and infrastructure. The technological hurdles are still challenging and numerous, and achieving the target efficiency, colour, colour rendering and lifetime has only partly been accomplished. In the last decade, progress in raising OLED efficiency has stagnated and advanced optical techniques proved to be essential in order to meet the annually growing performance targets. Interest in modelling tools capable of simulating material properties and devices becomes more and more important in order to overcome the remaining fundamental challenges and to accelerate research and development. The overall goal of IM3OLED is the development, evaluation and validation of a predictive multi-scale and multi-disciplinary modelling tool that will accelerate research and development of organic light-emitting diodes for lighting applications. IM3OLED aims to strengthen the leading position of the European OLED Industry by enabling a higher integration level of predictive computational methodologies that accelerate research and development of OLED Lighting technology. Furthermore, accelerated R&D enables an earlier market introduction of OLED Lighting technology in Europe which will create long-term European manufacturing jobs due to the high degree of technical novelty and required specialization.'
Novel lighting sources are required to reduce worldwide energy consumption. A European consortium worked to develop the necessary modelling tools for optimising an environmentally friendly lighting technology.