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FlexNanoOLED SIGNED

ITO-free multi-coloured nanoscale engineered OLEDs for large-area flexible lighting and full-colour active-matrix displays

Total Cost €

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EC-Contrib. €

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 FlexNanoOLED project word cloud

Explore the words cloud of the FlexNanoOLED project. It provides you a very rough idea of what is the project "FlexNanoOLED" about.

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Project "FlexNanoOLED" data sheet

The following table provides information about the project.

Coordinator
CENTRE INTERNATIONAL DE RECHERCHE AUX FRONTIERES DE LA CHIMIE FONDATION 

Organization address
address: ALLEE G MONGE 8
city: STRASBOURG
postcode: 67000
website: http://www.icfrc.fr/

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country France [FR]
 Total cost 150˙000 €
 EC max contribution 150˙000 € (100%)
 Programme 1. H2020-EU.1.1. (EXCELLENT SCIENCE - European Research Council (ERC))
 Code Call ERC-2017-PoC
 Funding Scheme ERC-POC
 Starting year 2017
 Duration (year-month-day) from 2017-10-01   to  2019-03-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    CENTRE INTERNATIONAL DE RECHERCHE AUX FRONTIERES DE LA CHIMIE FONDATION FR (STRASBOURG) coordinator 150˙000.00

Map

 Project objective

FlexNanoOLED aims at expanding the groundbreaking research developed within the ERC project SUPRAFUNCTION into a radically new and unprecedented technology to enable the fabrication of flexible ITO-free multi-coloured nanoscale engineered organic LEDs. In a recent breakthrough, we have developed a novel device architecture for optoelectronics which relies on a nanomesh scaffold and demonstrated its full potential by realising supramolecular nanowire photovoltaic devices with performances surpassing those of standard organic photodetectors. The nanomesh technology can be exploited to other devices in strategic S&T areas. In particular, it offers an effective solution to satisfy the demand for large-area flexible lighting and full-colour active-matrix display for printed e-wallpapers, rollable screens and luminous advertisement boards. In this PoC, we will use our nanomesh scaffold to fabricate polychromatic high-performing OLEDs supported on plastic substrates. Ink-jet printing will permit the selective integration of different colours into pre-designed patterns to realise >300 cm2 sized customised images with a pixel resolution of 50 μm. OLED represented a $4.9 billion industry in 2012; it now requires novel solutions for being implemented on flexible supports. Towards the FlexNanoOLED technology commercialisation, we will define the exact exploitation strategy, including IPR positioning, market survey, business model and fundraising once the device key performance indicators will be optimised. This will also include partnering with key enablers (business-related and/or technological) for commercial success. Within FlexNanoOLED, we will gain technical and commercial proof of concept, to develop the prototype and ultimately bringing this unprecedented OLED technology closer to the market, with the overall goal of increasing the share of Europe in the field of OLEDs, a technological realm that Europe has pioneered yet has lost the dominance of since a decade.

 Publications

year authors and title journal last update
List of publications.
2018 Lei Zhang, Nadiia Pasthukova, Yifan Yao, Xiaolan Zhong, Egon Pavlica, Gvido Bratina, Emanuele Orgiu, Paolo Samorì
Self-Suspended Nanomesh Scaffold for Ultrafast Flexible Photodetectors Based on Organic Semiconducting Crystals
published pages: 1801181, ISSN: 0935-9648, DOI: 10.1002/adma.201801181
Advanced Materials 30/28 2019-06-11
2018 Yifan Yao, Lei Zhang, Tim Leydecker, Paolo Samorì
Direct Photolithography on Molecular Crystals for High Performance Organic Optoelectronic Devices
published pages: 6984-6990, ISSN: 0002-7863, DOI: 10.1021/jacs.8b03526
Journal of the American Chemical Society 140/22 2019-06-11
2019 Yifan Yao, Lei Zhang, Emanuele Orgiu, Paolo Samorì
Unconventional Nanofabrication for Supramolecular Electronics
published pages: 1900599, ISSN: 0935-9648, DOI: 10.1002/adma.201900599
Advanced Materials 31/23 2019-06-06

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