High voltage, room temperature single-ion polymer electrolyte for safer all solid state lithium metal batteries (PSIONIC)

Grunddaten zu diesem Projekt

Art des ProjektesEU-Projekt koordiniert außerhalb der Universität Münster
Laufzeit an der Universität Münster01.07.2022 - 30.06.2026

Beschreibung

The greatest challenges towards the worldwide success of battery-powered electric vehicles revolve around the safety, energy density, and cost of the battery technologies. Solid-state polymer electrolytes and lithium metal anode address these challenges by replacing the flammable and unstable liquid electrolytes and enabling dendrite-free cycling of high-energy lithium metal cells manufactured by sustainable and cost-effective processing. The PSIONIC project advances the development of all-solid-state battery technology by employing amorphous cross-linked Polyethylene oxide (PEO) laminated on the thin lithium foil at the anode and high voltage cathode coated with a single-ion conductive polymer. This will allow to replace the flammable and unstable liquid electrolytes and enabling dendrite-free cycling of high-energy lithium metal cells manufactured by sustainable processing. Special attention will be devoted to the optimization of interfaces between the active material and polymer electrolyte. Materials selection will enable the use of the manufacturing technology available at BlueSolutions, which is readily scalable, based on sustainable processing using solvent-free extrusion. PSIONIC is aiming to develop cells with a safety hazard level 2, since no liquid component will be in the cell at the end of the project. The research and innovation actions carried under the PSIONIC project will not only just contribute to the technological advancements of all-solid-state Li-ion batteries in terms of safety, reliability, performance, cost, and sustainability, but will also enable higher uptake by the electromobility sector and end consumers, paving a pathway towards climate neutrality, and green energy transition.

Stichwörterlithium metal polymer; LMP
Webseite des Projektshttps://www.psionic.eu/
Förderkennzeichen101069703
Mittelgeber / Förderformat
  • EU Horizon Europe - Research and innovation action (RIA)

Projektleitung der Universität Münster

Winter, Martin
Münster Electrochemical Energy Technology Battery Research Center (MEET)

Antragsteller*innen der Universität Münster

Winter, Martin
Münster Electrochemical Energy Technology Battery Research Center (MEET)

Projektbeteiligte Organisationen außerhalb der Universität Münster

  • Accurec Recycling GmbHDeutschland
  • Le Centre national de la recherche scientifique (CNRS)Frankreich
  • BASF SEDeutschland
  • Politecnico Di Torino (POLITO)Italien
  • Renault s.a.s.Frankreich
  • National Institute of ChemistrySlowenien
  • UNIVERSITY OF NAPLES FEDERICO IIItalien
  • University of Picardie Jules VerneFrankreich
  • Uppsala UniversitySchweden
  • Blue Solutions S.A.S.Frankreich
  • CLERENS Consulting / I.C. BELGIUM SCRLBelgien
  • Specific PolymersFrankreich
  • ARMOR Battery Films / en'safe-foilFrankreich

Koordinierende Organisationen außerhalb der Universität Münster

  • Blue Solutions S.A.S.Frankreich