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Financement de l’UE (20 M €) : Battery Interface Genome - Plateforme d’accélération des matériaux Hor 02/07/2020 Programme de recherche et d'innovation de l'UE « Horizon »

Texte

Battery Interface Genome - Plateforme d’accélération des matériaux

Today, energy production and transport are evolving fast to meet challenging environmental targets and growing demand. The Achilles’ heel is energy storage, which is incapable of providing both low cost and high-performance solutions. The answer is not a simple evolution of existing batteries but disruptive technologies that must be discovered fast. The BIG-MAP vision is to develop a modular, closed-loop infrastructure and methodology to bridge physical insights and data-driven approaches to accelerate the discovery of sustainable battery chemistries and technologies. BIG-MAP’s strategy is to cohesively integrate machine learning, computer simulations and AI-orchestrated experiments and synthesis to accelerate battery materials discovery and optimization. The project will be a lever to create the infrastructural backbone of a versatile and chemistry-neutral European Materials Acceleration Platform, capable of reaching a 10-fold increase in the rate of discovery of novel battery materials and interfaces. To succeed in this unprecedented international initiative, the BIG-MAP consortium covers the entire battery discovery value chain from atoms to battery cells, totaling 34 partners from 15 countries and spanning world-leading academic experts, research laboratories and industry leaders. The consortium is a joint European battery community effort, and the large-scale European Research Initiative BATTERY 2030+ stands united behind the BIG-MAP consortium. In addition to 13 core partners from BATTERY 2030+, the BIG-MAP consortium includes 21 leading European partners with complementary battery skills and essential competences from critical research areas such as quantum machine learning, deep learning and autonomous synthesis robotics. All partners will work to create an innovative methodology relying on unique competences and cross-cutting initiatives to deliver a shared infrastructure and 12 key demonstrators to showcase the value of AI-orchestrated materials discovery.


Agencia Estatal Consejo Superior de Investigaciones Cientificas 476 324 €
Basf SE 359 820 €
Centre National de la Recherche Scientifique CNRS 1 167 985 €
Chalmers Tekniska Hogskola AB 573 500 €
Commissariat a L Energie Atomique et aux Energies Alternatives 905 714 €
Consiglio Nazionale Delle Ricerche 244 150 €
Danmarks Tekniske Universitet 2 411 617 €
Dassault Systemes Deutschland GmbH 432 118 €
Ecole Polytechnique Federale DE Lausanne 1 158 797 €
European Synchrotron Radiation Facility 448 750 €
Forschungszentrum Julich GmbH 792 488 €
Fraunhofer Gesellschaft ZUR Forderung DER Angewandten Forschung e. V. 658 378 €
Fundacion Cidetec 571 250 €
Innovative Advanced Materials Initiative 82 500 €
Institut Max VON Laue - Paul Langevin 391 000 €
IT-Universitetet I Kobenhavn 428 921 €
Karlsruher Institut Fuer Technologie 1 504 880 €
Kemijski Institut 439 400 €
Northvolt AB 220 000 €
Politechnika Warszawska 382 500 €
Politecnico Di Torino 213 313 €
Rhodia Operations 0,00 €
Saft 228 254 €
Sintef AS 730 250 €
Solvay SA 113 539 €
Specialty Operations France 0,00 €
Synchrotron Soleil SC 482 750 €
Tartu Ulikool 250 535 €
Technische Universiteit Delft 349 185 €
The Chancellor, Masters and Scholars of the University of Oxford 484 785 €
The Chancellor Masters and Scholars of the University of Cambridge 995 516 €
The University of Liverpool 649 728 €
Umicore SA 208 533 €
Umicore Specialty Powders France 0,00 €
Universitaet Muenster 299 500 €
Universitat Basel 0,00 €
Universitat Wien 415 390 €
Universite de Picardie Jules Verne 0,00 €
Uppsala Universitet 926 444 €

https://cordis.europa.eu/project/id/957189

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