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SUN-PILOT SIGNED

Subwavelength Nanostructure Pilot (Sun-Pilot)

Total Cost €

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EC-Contrib. €

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Partnership

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 SUN-PILOT project word cloud

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

moth    treatment    sub    object    scalable    performance    lotus    smart    reflectivity    components    lighter    resistant    enhancement    nature    automotive    photonic    desert    scratch    injection    cycle    weight    smartphone    unfortunately    platform    solar    marine    antireflective    engineer    panels    harvesting    surroundings    optical    biofouling    nanopatterned    water    pilot    surfaces    beetles    metal    techniques    packaging    lenses    sun    efficiency    nanostructures    fabrication    fascinating    curved    lamination    innovation    span    eyes    colourful    parts    leadership    scientists    interaction    displays    mass    subject    functional    wavelength    free    manufacturing    moulding    nanopatterning    security    lower    huge    scaling    moulds    routinely    piloting    incorporating    wear    lack    commercial    cleaning    disruptive    plastic    self    electronic    brings    laser    hurdle    wings    ratio    industry    leaves    scientific    nanostructured    butterfly    optics    cameras    suppliers    antiglare    benefit    engineers    business    creates    smudge    medical    boost    hydrophobic   

Project "SUN-PILOT" data sheet

The following table provides information about the project.

Coordinator
THE PROVOST, FELLOWS, FOUNDATION SCHOLARS & THE OTHER MEMBERS OF BOARD OF THE COLLEGE OF THE HOLY & UNDIVIDED TRINITY OF QUEEN ELIZABETH NEAR DUBLIN 

Organization address
address: College Green
city: DUBLIN
postcode: 2
website: www.tcd.ie

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 Ireland [IE]
 Project website http://www.sunpilot.eu/
 Total cost 8˙260˙442 €
 EC max contribution 7˙056˙398 € (85%)
 Programme 1. H2020-EU.2.1.2. (INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies – Nanotechnologies)
 Code Call H2020-NMBP-PILOTS-2017
 Funding Scheme IA
 Starting year 2018
 Duration (year-month-day) from 2018-01-01   to  2021-12-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    THE PROVOST, FELLOWS, FOUNDATION SCHOLARS & THE OTHER MEMBERS OF BOARD OF THE COLLEGE OF THE HOLY & UNDIVIDED TRINITY OF QUEEN ELIZABETH NEAR DUBLIN IE (DUBLIN) coordinator 2˙095˙908.00
2    FRAUNHOFER GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V. DE (MUNCHEN) participant 754˙998.00
3    NKT PHOTONICS A/S DK (BIRKEROD) participant 662˙148.00
4    FUNDACION TECNALIA RESEARCH & INNOVATION ES (DERIO BIZKAIA) participant 602˙653.00
5    UNIVERSITE DE BORDEAUX FR (BORDEAUX) participant 561˙912.00
6    GESELLSCHAFT FUR ANGEWANDTE MIKRO UND OPTOELEKTRONIK MIT BESCHRANKTERHAFTUNG AMO GMBH DE (AACHEN) participant 524˙937.00
7    MICRO RESIST TECHNOLOGY GESELLSCHAFT FUER CHEMISCHE MATERIALIEN SPEZIELLER PHOTORESISTSYSTEME MBH DE (BERLIN) participant 463˙750.00
8    LIGHTWAVE OPTICS LTD (IRISH PRECISION OPTICS) IE (CORK) participant 390˙453.00
9    VERTECH GROUP FR (NICE) participant 385˙087.00
10    GRUPO ANTOLIN-INGENIERIA SA ES (BURGOS) participant 322˙606.00
11    QIOPTIQ LIMITED UK (DENBIGHSHIRE, WALES) participant 151˙067.00
12    ELUCIDARE LIMITED UK (CAMBRIDGE) participant 140˙875.00
13    Coherent Scotland UK (Glasgow) participant 0.00

Map

 Project objective

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.

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The information about "SUN-PILOT" are provided by the European Opendata Portal: CORDIS opendata.

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