HINDERING DENDRITE GROWTH IN LITHIUM METAL BATTERIES
Akronyymi
HIDDEN
Rahoitetun hankkeen kuvaus
The HIDDEN project develops self-healing processes to enhance the lifetime and to increase the energy density of Li-metal batteries 50 % above the current level achievable with current Li-ion batteries. The HIDDEN consortium develops materials and their processes to functional battery layers as scalable, industry compatible, manufacturing technologies enabling sustainable energy storage technology with longer battery lifetime and higher energy storage capacity for more efficient utilization of sustainable, carbon free energy production technologies.
HIDDEN will develop novel self-healing thermotropic liquid crystalline electrolytes and piezoelectric separator technologies, investigate both technologies with protective additives, and apply multiscale modelling means for electrolyte design and analysis algorithm to monitor the dendrite growth. Technologies will be upscaled from laboratory to industrial manufacturing processes, tested and finally demonstrated by assembling battery cells with battery layers and the temperature control system.
The project brings together a strong interdisciplinary consortium of seven partners, industry and research balanced, with state-of-the-art background in battery chemistry and physics, materials modelling and analysis, upscaling of novel technologies by printing and coating, as well as in industrial assembling of battery cells. This is complemented by external advisory board with representation of key industry end-users.
Näytä enemmänAloitusvuosi
2020
Päättymisvuosi
2024
Myönnetty rahoitus
UNIVERSITE GRENOBLE ALPES (FR)
46 951.25 €
Third party
BELENOS CLEAN POWER HOLDING AG (CH)
637 505 €
Participant
SPECIFIC POLYMERS (FR)
478 603.75 €
Participant
BERNER FACHHOCHSCHULE (CH)
620 681.25 €
Participant
RTD TALOS LIMITED (CY)
150 000 €
Participant
CSEM CENTRE SUISSE D'ELECTRONIQUE ET DE MICROTECHNIQUE SA - RECHERCHE ET DEVELOPPEMENT (CH)
608 370 €
Participant
CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS (FR)
641 383 €
Participant
Myönnetty summa
3 993 476 €
Rahoittaja
Euroopan unioni
Rahoitusmuoto
Research and Innovation action
Puiteohjelma
Horizon 2020 Framework Programme
Haku
Ohjelman osa
EXCELLENT SCIENCE - Future and Emerging Technologies (FET) (5216Aihe
Self-healing functionalities for long lasting battery cell chemistries (LC-BAT-14-2020Haun tunniste
H2020-LC-BAT-2020-3 Muut tiedot
Rahoituspäätöksen numero
957202
Tunnistetut aiheet
batteries