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Project/Service Agreement:801464

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Status
Projeto EncerradoClosed
Publication
PublicadoPublished
General Data
Code: 72176
 
Application: 801464
 
Reference: 801464
Short name: SPRINT
Title: Ultra-versatile Structural PRINTing of amorphous and tuned crystalline matter on multiple substrates
Competitive Funding: Yes
Does it involve businesses?: Yes
No. of Participating Institutions: 8
Scope
Type: Funded Project
 
Geographical Scope: International
 
Type of Action: R&TD
Funding
Programme: H2020|ES|FET - H2020|Excellence Science|FET
Funding Institution: COMISSÃO EUROPEIA
Financial Geographical Scope: International
Date of the Funding Agreement: 2018-05-25
Scheduling
Planned Start Date: 2018
Effective Start Date: 2018-09-01
Expected Completion Date: 2023-02-28
Effective Completion Date: 2023-02-28
Budget
Currency: EUR
 
Total Approved Budget: 2.999.997,50 EUR
Details
Summary: Thin film deposition methods are crucial to generate progress in Key Enabling Technologies (KETs) of strategic importance for Europe, including Advanced Materials, Nanotechnology, Micro- and Nanoelectronics, Biotechnology, and Photonics. Devices like photovoltaic cells, light emitting diodes, electronic and optoelectronic micro-/nano-sensors are prominent examples of thin film applications where the precise control of material deposition and its degree of order (crystallinity) are of paramount importance for their performance and function. However, technologies for thin film deposition have very limited
capacity to tune the material crystallinity at room temperature and atmospheric pressure, or to create functional 3D architectures in a single and versatile manner. The requirement of high temperatures and vacuum conditions make them inherently costly and unsuitable for deposition on various substrates (e.g. plastics). Moreover, their dimensions are not
compatible with miniaturization and integration in table-top interfaces that would broaden their potential use. These limitations restrain the development of ground-breaking functional materials and new-conceptual devices. The absence of a radically new deposition technology hampers innovation and the appearance of new and cost-effective marketable products.
Therefore, it is of utmost importance to develop a radically new deposition technology to overcome these limitations, and that is at the core of the SPRINT project. SPRINT will develop a universal deposition technology of amorphous and tuned crystalline matter on multiple substrates, at room temperature and pressure. This technology not only combines the benefits of existing advanced deposition methods, at significantly lower cost and higher deposition rates, but also goes beyond the state-of-the-art in advanced materials development, to open new roadmaps to a plethora of future devices and applications.
Scientific Context
Scientific Domain (FOS - Level 2): Engineering and technology

Academic fields (CORDIS - Level 5)

Mais informações There are no Academic Fields associated with the Project.

Keywords

Mais informações There are no Keywords associated with the Project.
Documents
Mais informações There are no Documents associated with the Project.

Publications associated with the Project

Article in International Scientific Journal
João P. Vale (Author) (FEUP); Pedro G. Alves (Author) (FEUP); Soraia F. Neves (Author) (FEUP); Lars Nybo (Author) (Other); Andreas D. Flouris (Author) (Other); Tiago M. Santos (Author) (FEUP)
2021
Institutions Participating in the Project
Institution Contact Create Tab?
Name Short name Country Type Participation Name Telephone Email
Centre National de la Recherche Scientifique CNRS França RD Institute Proponent
Artia Nano - Engineering & Consulting IKE Grécia Company Partner
Center of Technology Research and Innovation CETRI Chipre RD Institute Partner
Consejo Superior De Investigaciones Cientificas CSIC Espanha Status Partner
Eidgenössische Technische Hochschule Zürich ETHZ Suíça Polytechnic Partner
Faculdade de Engenharia da Universidade do Porto FEUP Portugal University Partner
Katholieke Universiteit Leuven KUL Bélgica University Partner
Technische Universitat Graz TUG Áustria Company Partner
 
Budgets and Teams
Approved Budget: 394.543,75 EUR
Approved Funded Amount: 394.543,75 EUR
Approved co-funded Amount: -
Funding Rate: 100 %
Confidential Budget:

People in the Project

Institution Name Short name Role Dedication (%) Contribution (%) Allocation
Start date End date
FEUP Carlos Manuel Coutinho Tavares de Pinho CTP Researcher 2019-06-01 2020-07-31
FEUP João Pedro Rocha Vale JPRV Grant recipient 100 2021-01-06 2023-02-28
FEUP Pedro Guilherme Reis Alves PGRA Grant recipient 100 2021-01-06 2023-02-28
FEUP Tiago Sotto Mayor Moura Santos TSM Official Researcher at the OU 2018-09-01 2020-03-31
FEUP Tiago Sotto Mayor Moura Santos TSM Official Researcher at the OU 100 2021-03-19 2023-02-28

Technicians in the Project

Technician Contact
FEUP 391477 Sofia Araújo da Silva
Laboratories
Mais informações There are no Laboratories associated with the Project.
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