Projektdetails
Beschreibung
The aim of Renew4EHS is to develop electronic systems from renewable materials that are simultaneously high-performing, environmentally friendly and energy autonomous. We will target technologies that integrate biodegradable and renewable substrate materials, such as bacterial nanocellulose and fungal mycelium skin, with conductive carbon-based inks. The holistic approach pioneers the use of these materials in the development of fully sustainable and biodegradable triboelectric and piezoelectric nanogenerators. These devices will harvest energy from renewable sources, alongside hybrid materials, to create innovative energy-harvesting solutions. Unlike when made from conventional materials, these nanogenerators will ensure a lower environmental impact while maintaining high performance. Transforming energy storage, we will develop sodium-ion capacitors from sustainable carbon electrodes and bacterial nanocellulose or fungal mycelium-based separators that offer higher energy densities, rapid charging, and long-term stability. The research goals of Renew4EHS are:
●Biodegradable substrates for renewable energy systems
●Conductive carbon-based inks for recyclable electronic components
●Energy-harvesting technologies from renewable and biodegradable materials
●Sodium-ion capacitors for efficient, renewable energy storage
●Fully integrated, self-powered, sustainable electronic systems
●Biodegradable substrates for renewable energy systems
●Conductive carbon-based inks for recyclable electronic components
●Energy-harvesting technologies from renewable and biodegradable materials
●Sodium-ion capacitors for efficient, renewable energy storage
●Fully integrated, self-powered, sustainable electronic systems
| Kurztitel | Renew4EHS |
|---|---|
| Akronym | R4EHS |
| Status | Laufend |
| Tatsächliches Beginn-/Enddatum | 01.01.2026 → 31.12.2029 |
Projektbeteiligte
- Johannes Kepler Universität Linz
- ETH Zürich (Projektpartner*in)
- Kompetenzzentrum Holz GmbH (Koordinator*in) (Leitung)
- Instituto de Ciencia y Tecnologia del Carbono (Projektpartner*in)
- AdFiS products GmbH (Projektpartner*in)
- Born GmbH (Projektpartner*in)
- Delfortgroup – Papierfabrik Wattens GmbH & Co KG (Projektpartner*in)
- Fundermax GmbH (Projektpartner*in)
- HEAD Sport GmbH (Projektpartner*in)
- HeiQ AeoniQ GmbH (Projektpartner*in)
- Mayr- Melnhof Holz Holding AG (Projektpartner*in)
- Mycrobez AG (Projektpartner*in)
- NOSI – Network for Olfactory System Intelligence GmbH (Projektpartner*in)
- Pleione Energy SA (Projektpartner*in)
- Sendance GmbH (Projektpartner*in)
- Tiger Coatings (Projektpartner*in)
- UPM Biochemicals GmbH (Projektpartner*in)
- University of Chinese Academy of Sciences (Projektpartner*in)
- Gillis Naturals Agriculture & Processing Inc. (Projektpartner*in)
Wissenschaftszweige
- 211 Andere Technische Wissenschaften
- 103015 Kondensierte Materie
- 103013 Ionenphysik
- 210004 Nanomaterialien
- 104018 Polymerchemie
- 103023 Polymerphysik
- 210001 Nanoanalytik
- 103009 Festkörperphysik
- 202012 Elektrische Messtechnik
- 103008 Experimentalphysik
- 104014 Oberflächenchemie
- 103021 Optik
- 103 Physik, Astronomie
- 103020 Oberflächenphysik
- 103018 Materialphysik
- 503015 Fachdidaktik Technische Wissenschaften
- 103017 Magnetismus
- 103005 Atomphysik
- 202036 Sensorik
- 203016 Messtechnik
JKU-Schwerpunkte
- Sustainable Development: Responsible Technologies and Management
- Digital Transformation