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Subwavelength Nanostructure Pilot (Sun-Pilot)

Description du projet

Révolutionner le processus de fabrication des surfaces nanostructurées

L’exploitation commerciale des surfaces nanostructurées est limitée par l’absence de méthodes rentables et évolutives de production de nano-motifs. Or, ces surfaces présentent un énorme potentiel pour améliorer des produits tels que les dispositifs photoniques, les panneaux solaires ou les pièces automobiles. Malheureusement, le processus de fabrication actuel constitue un obstacle important. Le projet SUN-PILOT, financé par l’UE, vise à résoudre ce problème en concevant une plateforme innovante et rentable pour la fabrication en masse de surfaces optiques antireflets à nano-motifs résistantes aux rayures comme à l’usure. Cette innovation permettra non seulement d’améliorer le rapport performance/coût des dispositifs photoniques, mais aussi de créer des surfaces plus légères et fonctionnelles pour l’industrie automobile, faisant de l’Europe un leader dans ce domaine.

Objectif

Nanostructured surfaces that engineer the interaction between an object and its surroundings are a subject of scientific and manufacturing importance. Nature routinely creates nanostructured surfaces with fascinating properties, such as antireflective moth eyes, self-cleaning lotus leaves, colourful butterfly wings, and water harvesting desert beetles. Well defined nanostructured surfaces have huge commercial potential due to product enhancement: reduced reflectivity in photonic devices and solar panels, antiglare plastic parts for the automotive industry, hydrophobic self-cleaning surfaces for smart packaging, antireflective and smudge-free smartphone displays, and biofouling resistant marine and water treatment systems. Unfortunately, the lack of cost-effective, scalable, nanopatterning methods is a major hurdle for the commercial exploitation of nanopatterned surfaces. SUN-PILOT will address this challenge by developing a novel and cost effective platform for up-scaling sub-wavelength nanostructures fabrication techniques that can be applied to curved surfaces such as optical lenses, and the mass production of metal moulds for injection moulding of plastic parts. The expected impact of SUN-PILOT for the Optics Industry is a disruptive technology that will boost the performance/cost ratio of photonic devices by piloting mass fabrication of scratch and wear resistant nanopatterned antireflective optical surfaces. Significant enhancement will be achieved in the efficiency of optical components and systems incorporating these devices, such as laser systems, electronic displays, security cameras and medical devices. The Automotive Industry will benefit from a novel method to produce functional surfaces at lower cost and lighter weight than existing lamination methods. This proposal brings together scientists and engineers to span innovation, business development and the product cycle from suppliers to end users and will ensure a leadership role of for Europe.

Appel à propositions

H2020-IND-CE-2016-17

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Sous appel

H2020-NMBP-PILOTS-2017

Régime de financement

IA - Innovation action

Coordinateur

THE PROVOST, FELLOWS, FOUNDATION SCHOLARS & THE OTHER MEMBERS OF BOARD, OF THE COLLEGE OF THE HOLY & UNDIVIDED TRINITY OF QUEEN ELIZABETH NEAR DUBLIN
Contribution nette de l'UE
€ 2 170 658,00
Adresse
COLLEGE GREEN TRINITY COLLEGE
D02 CX56 DUBLIN 2
Irlande

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Région
Ireland Eastern and Midland Dublin
Type d’activité
Higher or Secondary Education Establishments
Liens
Coût total
€ 2 170 658,00

Participants (14)