Project Description

FULL-MAP is a pioneering initiative that seeks to redefine the limits of what is possible in battery innovation. The project focuses on creating a Materials Acceleration Platform (MAP) that amplifies human capabilities, enabling faster, more efficient development of new battery chemistries with ultra-high performances. To achieve this, FULL-MAP relies on the development of a unique R&D infrastructure and accelerated methodology that integrates inverse design of materials and computational and experimental methods with Artificial Intelligence (AI), Big Data, Autonomous Synthesis, and extensive High-Throughput characterization and testing. FULL-MAP’s comprehensive and modular approach also encompasses key analyses at various levels, from material to cell assembly. It simulates the entire battery development process, from material design to final battery testing, considering environmental and economic factors, significantly advancing sustainable battery technology.

Objective

The primary objective of FULL-MAP is to accelerate the discovery, development, and optimization of sustainable, next-generation battery materials and interfaces by at least a factor of five. By establishing a fully chemistry-agnostic and autonomous ecosystem, the project aims to drastically reduce the time-to-market for ultra-high-performance batteries. Ultimately, FULL-MAP seeks to deliver durable, safe, and cost-effective energy storage solutions that drive economic competitiveness for EU industries while significantly contributing to the decarbonization of the transport, energy, and industrial sectors.

 

Grant Agreement ID: 101192848

DOI: 10.3030/101192848

Topic: HORIZON-CL5-2024-D2-01-05 - Furthering the development of a materials acceleration platform for sustainable batteries (combining AI, big data, autonomous synthesis robotics, high throughput testing) (Batt4EU Partnership)

Start date: 1 February 2025

End date: 31 January 2029

Duration: 48 months

Webpage: https://www.full-map.eu/

Awards

FULLy integrated, autonomous & chemistry agnostic Materials Acceleration Platform for sustainable batteries
European Commission