Explore the words cloud of the CORNET project. It provides you a very rough idea of what is the project "CORNET" about.
The following table provides information about the project.
ARISTOTELIO PANEPISTIMIO THESSALONIKIS
|Coordinator Country||Greece [EL]|
|Total cost||3˙993˙750 €|
|EC max contribution||3˙993˙750 € (100%)|
1. H2020-EU.2.1.3. (INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Advanced materials)
|Duration (year-month-day)||from 2018-01-01 to 2020-12-31|
Take a look of project's partnership.
|1||ARISTOTELIO PANEPISTIMIO THESSALONIKIS||EL (THESSALONIKI)||coordinator||781˙250.00|
|2||ORGANIC ELECTRONIC TECHNOLOGIES PRIVATE COMPANY IKE||EL (THESSALONIKI)||participant||458˙750.00|
|3||APEVA SE||DE (HERZOGENRATH)||participant||443˙750.00|
|4||UNIVERSITY OF SURREY||UK (GUILDFORD)||participant||362˙500.00|
|5||NPL MANAGEMENT LIMITED||UK (MIDDLESEX)||participant||335˙000.00|
|6||FLUXIM AG||CH (FEUSISBERG)||participant||312˙500.00|
|7||CENTRO RICERCHE FIAT SCPA||IT (ORBASSANO)||participant||300˙000.00|
|8||PANEPISTIMIO IOANNINON||EL (IOANNINA)||participant||293˙750.00|
|9||GRANTA DESIGN LTD||UK (CAMBRIDGE)||participant||275˙000.00|
|10||CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS||FR (PARIS)||participant||250˙000.00|
|11||ELLINIKO SOMATEIO GIA IA ORGANIKA KAI EETIPOMENA ILEKTRONIKA||EL (Thessaloniki)||participant||181˙250.00|
|12||AIXTRON SE||DE (HERZOGENRATH)||participant||0.00|
CORNET is an ambitious project that develop a unique EU Open Innovation Environment (OIE), that cover the triangle of manufacturing, modelling and experimentation for the optimization the Organic/Large Area Electronic (OE) nanomaterials, materials behavior and nano-devices (OPVs, PPVs, OLEDs) manufacturing of R2R printing & gas transport (OVPD) processes, to validate materials models based on experimentation and fabricate tailored OE devices and systems for demonstration to industrial applications (e.g. automotive, greenhouses). CORNET will develop a sustainable OIE Platform and OIE Database for documentation of citable & industrially accepted protocols for OE material and device characterization, modelling and manufacturing. CORNET strategy will establish strong links and clustering with existing EU clusters (as EMMC, EMCC, EPPN), end-user & industrial associations, and EU networks to increase the speed of OE materials/device development and industry uptake, maximize the acceptance of the OIE and push-through standards for adoption by industry worldwide.
The CORNET main objectives are to: 1. Develop an effective OIE with world-class experts in Manufacturing, Multiscale Characterization & Modelling, connected to EU clusters, and create a reliable database with citable protocols with contribution to Standards 2. Multiscale Characterization & Modelling to Optimize OE nanomaterials and devices fabrication and Models Validation 3. Optimize the nano-device Manufacturing of OPVs, PPVs, OLEDs by Printing (R2R, S2S) and OVPD Processes 4. Fabricate Tailored Devices, Systems and Demonstrate to industrial applications (e.g. automotive, greenhouses) CORNET has developed a strategic plan for the clustering activities with more than 800 existing related bodies, a Business Plan for the continuation of the OIE beyond the project and the Innovation Management, IPR and legal support services to protect generated foreground and to enable its adoption by the EU research & industria
|CORNET Platform to support OIE (1 of 2)||Documents, reports||2020-01-23 14:56:35|
|Public presentation, Project Logo and website||Websites, patent fillings, videos etc.||2020-01-23 14:56:35|
|CORNET Database (first version)||Documents, reports||2020-01-23 14:56:35|
|Intermediate Report on Dissemination and Communication||Documents, reports||2020-01-23 14:56:35|
Take a look to the deliverables list in detail: detailed list of CORNET deliverables.
|year||authors and title||journal||last update|
Martin T. Neukom, Andreas Schiller, Simon ZÃ¼fle, Evelyne Knapp, Jorge Ãvila, Daniel PÃ©rez-del-Rey, Chris Dreessen, Kassio P.S. Zanoni, Michele Sessolo, Henk J. Bolink, Beat Ruhstaller
Consistent Device Simulation Model Describing Perovskite Solar Cells in Steady-State, Transient, and Frequency Domain
published pages: 23320-23328, ISSN: 1944-8244, DOI: 10.1021/acsami.9b04991
|ACS Applied Materials & Interfaces 11/26||2020-01-23|
R. M. I. Bandara, K. D. G. I. Jayawardena, S. O. Adeyemo, S. J. Hinder, J. A. Smith, H. M. Thirimanne, N. C. Wong, F. M. Amin, B. G. Freestone, A. J. Parnell, D. G. Lidzey, H. J. Joyce, R. A. Sporea, S. R. P. Silva
Tin( iv ) dopant removal through anti-solvent engineering enabling tin based perovskite solar cells with high charge carrier mobilities
published pages: 8389-8397, ISSN: 2050-7534, DOI: 10.1039/c9tc02003a
|Journal of Materials Chemistry C 7/27||2020-01-23|
Sandra Jenatsch, Simon ZÃ¼fle, Paul-Anton Will, Balthasar BlÃ¼lle, Martin Neukom, Simone Lenk, Sebastian Reineke, Daniele Braga, Konrad Domanski, Beat Ruhstaller
Pâ€176: Quantitative Analysis of Charge Transport in Singleâ€Carrier Devices and OLEDs Combining DC and AC Data
published pages: 1895-1898, ISSN: 0097-966X, DOI: 10.1002/sdtp.13333
|SID Symposium Digest of Technical Papers 50/1||2020-01-23|
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The information about "CORNET" are provided by the European Opendata Portal: CORDIS opendata.
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