AEVIOM

Advanced experimentally validated integrated OLED model for a breakthrough in high-performance OLED technology

 Coordinatore PHILIPS ELECTRONICS NEDERLAND B.V. 

 Organization address address: Boschdijk 525
city: EINDHOVEN
postcode: Postbus 90050

contact info
Cognome: KEUR, PATRICK
Email: send email
Telefono: +31 40 2740361
Fax: +31 40 2745829

 Nazionalità Coordinatore Netherlands [NL]
 Sito del progetto http://www.aeviom.eu
 Totale costo 3˙879˙221 €
 EC contributo 2˙550˙000 €
 Programma FP7-ICT
Specific Programme "Cooperation": Information and communication technologies
 Funding Scheme CP
 Anno di inizio 2008
 Periodo (anno-mese-giorno) 2008-01-15   -   2011-01-14

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    PHILIPS ELECTRONICS NEDERLAND B.V.

 Organization address address: Boschdijk 525
city: EINDHOVEN
postcode: Postbus 90050

contact info
Cognome: KEUR, PATRICK
Email: send email
Telefono: +31 40 2740361
Fax: +31 40 2745829

NL (EINDHOVEN) coordinator 0.00
2    FLUXIM AG

 Organization address address: DORFSTRASSE 7
city: FEUSISBERG

contact info
Cognome: N/A

CH (FEUSISBERG) participant 0.00
3    PHILIPS TECHNOLOGIE GMBH FORSCHUNGSLABORATORIEN AACHEN

 Organization address address: WEISSHAUSSTRASSE 2
city: AACHEN
postcode: 52066

contact info
Cognome: N/A

DE (AACHEN) participant 0.00
4 RIJKSUNIVERSITEIT GRONINGEN NL participant 0.00
5    SIM4TEC GMBH

 Organization address address: PRIESSNITZSTRASSE 13
city: DRESDEN
postcode: 1099

contact info
Cognome: N/A

DE (DRESDEN) participant 0.00
6 TECHNISCHE UNIVERSITAET DRESDEN DE participant 0.00
7    TECHNISCHE UNIVERSITEIT EINDHOVEN

 Organization address address: DEN DOLECH 2
city: EINDHOVEN
postcode: 5612 AZ

contact info
Cognome: N/A

NL (EINDHOVEN) participant 0.00
8 THE CHANCELLOR, MASTERS AND SCHOLARS OF THE UNIVERSITY OF CAMBRIDGE participant 0.00
9    ZUERCHER HOCHSCHULE WINTERTHUR

 Organization address address: TECHNIKUMSTRASSE 9
city: WINTERTHUR
postcode: 8401

contact info
Cognome: N/A

CH (WINTERTHUR) participant 0.00

Mappa


 Word cloud

Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.

experimentally    white    emitting    efficient    oleds    photo    physical    model    transport    breakthrough    device    generation    validated    stability    organic    efficiency    lifetime    optical    oled    light   

 Obiettivo del progetto (Objective)

White Organic Light Emitting Diodes (OLEDs) are potentially highly efficient large area light sources that can be used for general lighting applications in hitherto unprecedented ways, such as light-emitting flexible foils. In the past years, the luminous efficacy of prototype white OLEDs has shown a very fast, fivefold, increase. In principle, there seems to be no fundamental obstacle towards 100 lm/W efficiency, beyond that of fluorescent lamps. However, in practice the ever-increasing complexity of OLEDs (20 layers or more) now hampers further progress towards that goal, in part because reaching this efficiency goal is only of practical interest in combination with durability, colour stability and tunability, mechanical stability and ease of fabrication.

For the further development of efficient white OLEDs, the availability of an experimentally validated opto-electronic device model will be crucial. Today's 'first generation' models, based on conventional understanding of transport and photo-physical processes, are at least incomplete for realistic OLED materials. The AEVIOM project aims at enabling a breakthrough in white OLED efficiency and lifetime by the development and application of an integrated second generation OLED model.

After experimental validation, the model will provide a quantitatively correct physical description of the effects of disorder on the transport and photo-physical processes. The model will be the basis for numerical methods that properly include the entire chain of electrical and optical effects inside the organic semiconductor, as well as the optical out-coupling. Finally, experimentally validated recommendations will be given towards the realization of a breakthrough in white OLED efficiency and lifetime, and also in device manufacturing (simplified optimal layer structure).

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