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Funded Projects › H2020

SPICY · Silicon and polyanionic chemistries and architectures of Li-ion cell for high energy battery

H2020Status: CLOSED1 May 201531 July 2018EU funding €6,896,054Call H2020-GV-2014-2015

SPICY is a collaborative research project associating 5 industrials partners (3 large groups and 2 SME) with 8 academic and research centres to the multidisciplinary development of a new generation of Li-ion batteries meeting the expectations of electrical vehicle end-users, including performances, safety, cost, recyclability and lifetime. For this purpose, SPICY will consider the development of new chemistry materials, cell architectures and packaging with the support of understanding and modelling activities. SPICY will address the whole value chain until the implementation of manufacturing.SPICY will focus on polyanionic phosphates for the cathode material. LiFePO4 is well known as a safer and more durable cathode material. Unfortunately, its energy density is low due to the electrochemical potential of Fe. One objective of SPICY will be to bind metals having a higher potential than Fe, allowing an increase of the material potential, and thus a higher energy. Regarding the anode material, SPICY will study two chemistries. Graphite is used in current Li-ion cells and remains one of the major anode materials for the next generation of Li-ion cells. Silicon is appropriate for high energy cell applications but has lower cyclability. Silicon will be investigated through new synthesis process methods providing nanoparticles and core-shell structures to improve particle stability.Active and passive components will be harmonized for a higher energy density i.e: polyanionic phosphate /graphite up to 200 Wh/kg, and polyanionic/Si up to 230 Wh/kg. In addition, three cells architectures and packaging will be investigated. The thermal behaviour of these cells will be studied in ageing tests in order to model Li-ion cells. Finally, the industrial environment will be considered and SPICY solution will be assessed so as to optimise cost and to integrate eco-design, thereby supporting the future development of a strong industrial base in this field.

Consortium · 15 organisations

coordinator

COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES

FR · €1,590,079

participant

VLAAMSE INSTELLING VOOR TECHNOLOGISCH ONDERZOEK N.V.

BE · €726,063

participant

FORSCHUNGSZENTRUM JULICH GMBH

DE · €254,724

participant

WAVESTONE LUXEMBOURG SA

LU · €214,688

participant

TECHNISCHE UNIVERSITAET MUENCHEN

DE · €982,454

participant

PROLLION SAS

FR · €23,241

participant

RECUPYL SAS

FR · €141,570

participant

CENTRE TECHNIQUE INDUSTRIEL DE LA PLASTURGIE ET DES COMPOSITES

FR · €339,611

participant

BELIFE

BE

participant

KARLSRUHER INSTITUT FUER TECHNOLOGIE

DE · €507,349

participant

HAHN-SCHICKARD-GESELLSCHAFT FUR ANGEWANDTE FORSCHUNG EV

DE · €337,250

participant

TEKNA PLASMA EUROPE

FR · €311,750

participant

FUNDACION CIDETEC

ES · €847,523

participant

PRAYON SA

BE · €619,754

participant

EIDGENOSSISCHE MATERIALPRUFUNGS- UND FORSCHUNGSANSTALT

CH

Research fields

View the official record on CORDIS →

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Source: CORDIS, Publications Office of the European Union. Global Research Partnerships surfaces open EU research data to help you find collaborators; we are not affiliated with the European Union.