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Nabór UE: Advanced Materials for Miniaturised Energy Harvesting Systems

A chance to finance groundbreaking materials for miniature energy-harvesting systems — an ideal place to combine materials research with IoT, wearables or smart city applications and, by the way, strengthen its position in paneur

When Wednesday, 28 October 2026
Time 01:00
City online

Expected impact:

The main effects of this challenge will be:

  • A new generation of energy-neutral systems for new services that will improve the lives of European citizens by applying in areas such as the diagnosis of care points, smart, sustainable cities, etc.
  • Supporting sustainable development in energy consumption and production in line with the ambitions of RePowerEU [1] and Green Deal [2], and
  • Increase the sustainability of IoTs and generally autonomous energy systems.

Expected result:

Ambitious proposals in this call:

  • define a new generation of advanced materials for miniaturized energy collection modules, and
  • achieve TRL 4 for energy-efficient autonomous systems.

Portfolio approach

The portfolio of selected projects should lead to the development of various advanced materials used for a number of miniaturized energy collection modules and integrated terminal systems.

In order to achieve this objective, the following factors will inform about the selection of projects in the portfolio:

  • Phenomena used to generate energy from the environment (e. "Software" specially designed or modified for the "use" of equipment specified in 1C001. a. 2. solar, thermoelectric, piezoelectric, nanotribological, etc. )
  • Composition of the proposed advanced materials, and
  • Scope (e. "Software" specially designed or modified for the "use" of equipment specified in 1C001. a. 2. agriculture, automotive industry, health monitoring, food materials, smart city management, energy management, industrial monitoring, etc. ).

The selected projects will be assigned to carry out or engage in portfolio activities focused on the following priorities:

  • Comparative analysis to compare the proposed technologies, phenomena used, advanced materials and approaches
  • sharing scientific considerations, results of various physical/chemical phenomena examined to expand knowledge and support new disclosures in
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Expected Impact: The main impacts of this Challenge will be: • A new generation of energetically autonomous systems enabling new services that will improve the life of European citizens through applications in areas such as point of care diagnostics, smart sustainable cities etc. • Supporting sustainability in energy consumption and production in keeping with the ambitions of RePowerEU[1] and the Green Deal[2], and • Enhancement of the sustainability of IoTs and energetically autonomous systems in general. Expected Outcome: Ambitious proposals put forward under this call will: • identify a new generation of advanced materials for miniaturised energy harvesting modules, and • achieve TRL 4 for the resulting energetically autonomous systems. Portfolio Approach The portfolio of selected projects should lead to the development of a variety of advanced materials applied to a range of miniaturised energy harvesting modules and final integrated systems. To achieve this objective, the following factors will inform the choice of projects in the portfolio: • Phenomena exploited to harvest energy from the environment (e.g. solar, thermoelectric, piezoelectric, nanotribological etc.) • Composition of the proposed advanced materials, and • Field of application (e.g. agriculture, automotive, health monitoring, wearables, smart city management, energy management, industrial monitoring etc.). The selected projects will be assigned to lead and/or engage in portfolio activities centred on the following priorities: • benchmarking to compare proposed technologies, phenomena exploited, advanced materials used and approaches • sharing scientific considerations, results on the different physical/chemical phenomena studied to advance the knowledge and foster new disclosures in the field with potential shifts in the paradigm • sharing insights on integration of the modules to solve potential issues and help advance towards delivering effective operational energetically…