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Les informations sur les projets et maintenant aussi les résumés de rapports Horizon 2020 sont disponibles sur CORDIS. Tous les projets H2020 peuvent être téléchargés depuis le Portail des données ouvertes de l'UE .

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On-chip memristive artificial nano-synapses and neural networks
ID: 259068
Date de début: 2010-11-01, Date de fin: 2015-10-31
These last fifty years have seen Von Neumann computing architectures boom. Nevertheless, even the most powerful digital computers cannot rapidly solve apparently simple problems such as image interpretation. However, because its structure is massively parallel and analog, the...
Programme: FP7-IDEAS-ERC
Record Number: 95287
Last updated on: 2016-12-05
Final Report Summary - NANOBRAIN (On-chip memristive artificial nano-synapses and neural networks)
There is today a revival of brain-inspired hardware architectures. Indeed, because they are massively parallel systems, neuromorphic architectures have remarkable qualities: they are fast, they don’t need a lot of power to operate, and they can work even if a large number of...
Programme: FP7-IDEAS-ERC
Record Number: 183466
Last updated on: 2016-06-07
Mid-Term Report Summary - SELFORG (Self Organization in Cytoskeletal Systems)
Structure formation and constant reorganisation of the actin cytoskeleton are key requirements for the function of living cells. While such processes are tightly controlled by the biochemical activation of the participating proteins, structures need to be formed by a physical...
Programme: FP7-IDEAS-ERC
Record Number: 179499
Last updated on: 2016-04-26
Self Organization in Cytoskeletal Systems
ID: 289714
Date de début: 2012-04-01, Date de fin: 2017-12-31
The requirements on the eukaryotic cytoskeleton are not only of high complexity, but include demands that are actually contradictory in the first place: While the dynamic character of cytoskeletal structures is essential for the motility of cells, their ability for morphologi...
Programme: FP7-IDEAS-ERC
Record Number: 105776
Last updated on: 2016-12-05
Towards spin qubits and Majorana fermions in Germanium self-assembled hut-wires
ID: 335497
Date de début: 2014-01-01, Date de fin: 2018-12-31
A renewed interest in Ge has been sparked by the prospects of exploiting its lower effective mass and higher hole mobility to improve the performance of transistors. Ge emerges also as a promising material in the field of spin qubits, as its coherence times are expected to be...
Programme: FP7-IDEAS-ERC
Record Number: 110271
Last updated on: 2016-04-26
Final Report Summary - BUONAPART-E (Better Upscaling and Optimization of Nanoparticle and Nanostructure Production by Means of Electrical Discharges)
The BUONAPART-E project demonstrated that a physical nanoparticle synthesis process can be economically scaled up to yield a production rate of several kg/day. The process is simple, versatile, and reliable. It avoids chemical precursors and solvents, while fully recycling the...
Programme: FP7-NMP
Record Number: 185102
Last updated on: 2016-06-23
Better Upscaling and Optimization of Nanoparticle and Nanostructure Production by Means of Electrical Discharges
ID: 280765
Date de début: 2012-02-01, Date de fin: 2016-01-31
The BUONAPART-E project aims to demonstrate that a physical nanoparticle synthesis process can be economically scaled-up to yield 100 kg/day production rate, which is the target rate mentioned in the Call Topic. The process is simple, versatile, and reliable. It avoids chemic...
Programme: FP7-NMP
Record Number: 102134
Last updated on: 2016-08-08
Síntesis de nanopartículas a gran escala
Un grupo de científicos financiado por la Unión Europea ha desarrollado un nuevo proceso rentable para sintetizar nanopartículas utilizando descargas eléctricas que elimina la necesidad de utilizar precursores químicos, solventes y estabilizadores peligrosos.
Programme: FP7-NMP
Record Number: 190623
Last updated on: 2016-11-29
Available languages: DE, EN, ES, FR, IT, PL
La synthèse à grande échelle de nanoparticules
Des scientifiques financés par l'UE ont développé un nouveau processus rentable pour synthétiser des nanoparticules en utilisant des décharges électriques, éliminant le besoin de produits chimiques précurseurs, de solvants et de stabilisants dangereux.
Programme: FP7-NMP
Record Number: 190623
Last updated on: 2016-11-29
Available languages: DE, EN, ES, FR, IT, PL
Large-scale synthesis of nanoparticles
EU-funded scientists developed a new cost-effective process to synthesise nanoparticles using electrical discharges, eliminating the need for hazardous chemical precursors, solvents and stabilisers.
Programme: FP7-NMP
Record Number: 190623
Last updated on: 2016-11-29
Available languages: DE, EN, ES, FR, IT, PL
12 3 4 5 6 7 8 9 10 > >| 
List retrieved on: 2016-12-05