H2020Individual fellowship2021–2023

RPOB · Redox Polymer with synergetic electrical and ionic conducting properties for all-Organic Batteries. [RPOB]

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2021-05-01 → 2023-04-30
EU contribution
€172,932
Participants
1
Scheme
MSCA-IF

Lines connect the coordinator with its partners.

Results in brief

Redox Polymer with synergetic electrical and ionic conducting properties for all-Organic Batteries. [RPOB]

The development of more efficient and safer solid-state energy storage is imperative to sustainably meet the energy demand of our future society and was recently announced as one of the top 10 emerging technologies in chemistry by the International Union of Pure and Applied Chemistry, IUPAC. The current Li-ion battery technology, which is mainly based on inorganic transition metal oxide materials (e.g. lithium cobalt oxide (LCO) and nickel cobalt manganese oxide (NMC)), has recently drawn health, social and environmental concerns due to the toxicity or limited mineral resources of some inorganic components (e.g. nickel and cobalt). On the contrary, organic redox polymers are environmentally friendly and offer significant advantages, which are not easily achievable with inorganic electrode materials, including low cost, structural diversity, flexibility, ease of processability and recyclability. However, all-organic batteries suffer several challenges, limiting their implementation: i) fast capacity fading due to dissolution of the organic redox polymer in the liquid electrolyte and ii) low redox active polymer loading (~50 wt.%) due to poor electronic conduction, leading to impractical electrode loading for battery applications. The aim of RPOB project is to develop organic redox copolymers with enhanced electronic and ionic conduction properties, for application in organic batteries. This could potentially reduce the need for weight consuming conductive carbon additives, and thus, enhancing electrode loading to a practical level.

Data: CORDIS, © European Union

Project objective

Designing safer, more efficient and environmentally friendly energy storage technology is of great importance for the sustainable development of our modern society. All-organic batteries have been identified as a promising, environmentally friendly alternative to the current Li-ion battery technology. However, all-organic batteries suffer several challenges, currently limiting their implementation: i) fast capacity fading due to dissolution of redox polymer in the liquid electrolyte and ii) low redox polymer loading, leading to impractical electrode loading for battery applications. RPOB proposal aims to develop redox block copolymers with synergetic properties, allowing both electronic and ionic conductivities as well as redox activity, for application in solid-state all-organic batteries. This approach will enable the design of a single component redox polymer electrode with a well-defined 3D-interconnected network, unlocking the electrode capacity to a practical level. The translation towards solid-state all-organic batteries will also eliminate the current issue related to the dissolution of redox polymers. The MSCA Fellowship will provide Dr. Goujon with a strong set of technical, professional and transferable skills, especially with the acquisition of valuable polymer synthesis, which will complete his practical expertise in solid-state battery technology. The Innovative Polymers Group directed by Prof. Mecerreyes at POLYMAT-University of the Basque Country is one of the top-class groups in the area of redox polymers. The multidisciplinary aspect of the RPOB project, along with the secondment to the group of Prof. Steiner at Adolphe Merkle Institute, will ensure that Dr. Goujon has the necessary competencies, trackrecord and scientific network required to make the RPOB project a success, and ultimately reach his career goal of becoming an independent researcher in either a leading university or a R&D batteries company, and securing his European reintegration.

Original text from CORDIS.

Participants

  • UNIVERSIDAD DEL PAIS VASCO/ EUSKAL HERRIKO UNIBERTSITATEA · LeioaCoordinatorSpain

Links

Data: CORDIS, © European Union