Explore the words cloud of the NANOLEAP project. It provides you a very rough idea of what is the project "NANOLEAP" about.
The following table provides information about the project.
Coordinator |
UNIVERSIDAD DE CASTILLA - LA MANCHA
Organization address contact info |
Coordinator Country | Spain [ES] |
Project website | http://www.nanoleap.eu |
Total cost | 7˙679˙159 € |
EC max contribution | 6˙878˙348 € (90%) |
Programme |
1. H2020-EU.2.1.2.4. (Efficient and sustainable synthesis and manufacturing of nanomaterials, components and systems) |
Code Call | H2020-NMP-PILOTS-2014 |
Funding Scheme | RIA |
Starting year | 2015 |
Duration (year-month-day) | from 2015-01-01 to 2018-06-30 |
Take a look of project's partnership.
NANOLEAP project aims at the development of a coordinated network of specialized pilot lines for the production of nanocomposite based products for different civil infrastructure and building applications. The goal of this infrastructure is to support the research activities of European SMEs in the Construction sector in nanocomposite products enabling the progress of the product to next steps of technology deployment such as installation of industrial pilot lines and enter in the commercialization stage. For the creation of the NANOLEAP project pilot line network, the most promising applications of polymeric nanocomposites in the construction and engineering sector have been selected. This project will support the pilot lines for the scaling up and production of these nanocomposite based products in order to facilitate their further adoption by the entire construction chain: • Antiweathering and anticorrosion nanocomposite coatings for the protection of structures exposed to aggressive environments such as wind turbines, offshore, marine infrastructure. • Multifunctional polymeric nanocomposites providing smart applications to traditional construction materials such as concrete and coatings including self-cleaning, hydrophobicity, optical properties, early warning crack and water leak alarm. • Prefab non-structural elements such as aerogels mechanically reinforced with nanoparticles for high-thermal insulation applications in building insulation. . • Coated nanoparticles with improved compatibility with the matrix providing a wide range of functionalities and leading to high quality products and important saves of energy. In order to implement and demonstrate this approach, NANOLEAP project brings together a European Network of pilot production facilities focused on scaling up nanocomposite synthesis and processing methods.
4.5 Pilot plant for production of nanocomposite anti-ice coating | Other | 2019-05-24 12:34:23 |
9.8 Manual for use and access to the pilot lines | Documents, reports | 2019-05-24 12:34:20 |
9.6 Dissemination workshop | Other | 2019-05-24 12:34:23 |
9.7 Training activities report | Documents, reports | 2019-05-24 12:34:21 |
9.9 Project Impact Assessment | Documents, reports | 2019-05-24 12:34:23 |
9.4 Project logo, leaflets and project website and information brochure | Documents, reports | 2019-05-24 12:34:23 |
Take a look to the deliverables list in detail: detailed list of NANOLEAP deliverables.
year | authors and title | journal | last update |
---|---|---|---|
2019 |
Michael Thomas Müller, Kristina Eichhorn, Uwe Gohs, Gert Heinrich In-Line Nanostructuring of Glass Fibres Using Different Carbon Allotropes for Structural Health Monitoring Application published pages: 61, ISSN: 2079-6439, DOI: 10.3390/fib7070061 |
Fibers 7/7 | 2019-09-02 |
2017 |
M.P. Lavin-Lopez, A. Paton-Carrero, L. Sanchez-Silva, J.L. Valverde, A. Romero Influence of the reduction strategy in the synthesis of reduced graphene oxide published pages: 3195-3203, ISSN: 0921-8831, DOI: 10.1016/j.apt.2017.09.032 |
Advanced Powder Technology 28/12 | 2019-05-30 |
2018 |
Iván Navarro-Baena, Alejandra Jacobo-MartÃn, Jaime J. Hernández, Jose R. Castro Smirnov, Felipe Viela, Miguel A. Monclús, Manuel R. Osorio, Jon M. Molina-Aldareguia, Isabel RodrÃguez Single-imprint moth-eye anti-reflective and self-cleaning film with enhanced resistance published pages: 15496-15504, ISSN: 2040-3364, DOI: 10.1039/C8NR02386G |
Nanoscale 10/33 | 2019-05-30 |
2018 |
Michael Müller, Hendrik Pötzsch, Uwe Gohs, Gert Heinrich Online Structural-Health Monitoring of Glass Fiber-Reinforced Thermoplastics Using Different Carbon Allotropes in the Interphase published pages: 1075, ISSN: 1996-1944, DOI: 10.3390/ma11071075 |
Materials 11/7 | 2019-05-30 |
2017 |
Jaime J. Hernández, Miguel A. Monclús, Iván Navarro-Baena, Felipe Viela, Jon M. Molina-Aldareguia, Isabel RodrÃguez Multifunctional Nano-engineered Polymer Surfaces with Enhanced Mechanical Resistance and Superhydrophobicity published pages: , ISSN: 2045-2322, DOI: 10.1038/srep43450 |
Scientific Reports 7/1 | 2019-05-30 |
2018 |
Felipe Viela, Iván Navarro-Baena, Alejandra Jacobo-MartÃn, Jaime J. Hernández, Marta Boyano-Escalera, Manuel R. Osorio, Isabel RodrÃguez Nano-engineering safer-by-design nanoparticle based moth-eye mimetic bactericidal and cytocompatible polymer surfaces published pages: 22606-22616, ISSN: 2046-2069, DOI: 10.1039/C8RA03403F |
RSC Advances 8/40 | 2019-05-30 |
2018 |
A. Romero, M.P. Lavin-Lopez, L. Sanchez-Silva, J.L. Valverde, A. Paton-Carrero Comparative study of different scalable routes to synthesize graphene oxide and reduced graphene oxide published pages: 284-292, ISSN: 0254-0584, DOI: 10.1016/j.matchemphys.2017.10.013 |
Materials Chemistry and Physics 203 | 2019-05-30 |
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The information about "NANOLEAP" are provided by the European Opendata Portal: CORDIS opendata.
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