MSCA programme in HE

Marie Skłodowska-Curie Actions

The Marie Skłodowska-Curie Actions fund excellent research and innovation and equip researchers at all stages of their career with new knowledge and skills, through mobility across borders and exposure to different sectors and disciplines. The MSCA help build Europe’s capacity for research and innovation by investing in the long-term careers of excellent researchers.

The MSCA also fund the development of excellent doctoral and postdoctoral training programmes and collaborative research projects worldwide. By doing so, they achieve a structuring impact on higher education institutions, research centres and non-academic organisations.

The MSCA promote excellence and set standards for high-quality researcher education and training in line with the European Charter for Researchers and the Code of Conduct for the recruitment of researchers.

There are 5 types of MSCA targeting different objectives.

  • Doctoral Networks (DN)
    Supporting programmes to train doctoral candidates in academic and non-academic organisations.
  • Postdoctoral Fellowships (PF)
    Supporting career perspectives and excellence of postdoctoral researchers.
  • Staff Exchanges (SE)
    Encouraging collaborations between organisations through staff exchanges.
  • COFUND
    Co-funding of regional, national and international programmes.
  • MSCA and Citizens
    Bringing research and researchers closer to the public at large.

More information on the Marie Skłodowska-Curie Actions is available here.

MSCA Doctoral Networks (DN) Projects

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MSCA Postdoctoral Fellowships (PF) projects

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MSCA COFUND projects

2D-INK: Redesigning 2D Materials for the Formulation of Semiconducting Inks

Specific programme: FET-Open - Novel ideas for radically new technologies
UPV/EHU Partner Status: Coordinator
UPV/EHU PI: Aurelio Mateo Alonso
Project start: 01/01/2016
Project end: 31/12/2018

Brief description: 2D-INK is targeted at developing inks of novel 2D semiconducting materials for low-cost large-area fabrication processes on insulating substrates through a new methodology, which will exceed the properties of state-of-the-art graphene- and graphene oxide based inks. Achieving this would represent an important step forward in the processing of 2D semiconducting materials and will provide the key parameters for fabricating the next generation of ultrathin electronic appliances.


The inherent high-risk of 2D-INK is countered by a strongly interdisciplinary research team composed of 9 partners (8 academics + 1 SME) with demonstrated experience in their corresponding fields and with different yet highly complementary backgrounds. Therefore only together and in synergy they will be able to address the challenges of the multiple research and innovation aspects of 2D-INK that cover the entire value chain from materials design and synthesis, characterisation, formulation and processing to device implementation.


In addition 2D-INK has the potential to revolutionise research on 2D semiconducting materials way beyond the current interests on synthesis (high impact), since the efficient dispersion and formulation of 2D semiconducting materials into inks enables the applications of 2D semiconducting materials over different scientific and technological disciplines, such as electronics, sensing, photonics, energy storage and conversion, spintronics, etc.