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High energy lithium sulphur cells and batteries
ID: 666221
Start date: 2015-06-01, End date: 2019-05-31
Lithium sulphur batteries (LSB) are viable candidate for commercialisation among all post Li-ion battery technologies due to their high theoretical energy density and cost effectiveness. Despites many efforts, there are remaining issues that need to be solved and this will...
Programme: H2020-EU.2.1.3.2.
Record Number: 196988
Last updated on: 2017-08-04
[]
Record Number: 205523
Last updated on: 2017-10-26
[PROJECT DELIVERABLE] Dissemination and communication plan
D10.2 Dissemination and communication plan. The deliverable is self-explanatory in its title (work within Task 10.1; Deliverable leader: TAU; Partners: NIC) [M12].
HELIS Project (ID: 666221)
Last updated on: 2017-10-26
[PROJECT DELIVERABLE] Web page
D10.1. Web page. The deliverable is self-explanatory in its title (work within Task 10.4; Deliverable leader: NIC) [M6].
HELIS Project (ID: 666221)
Last updated on: 2017-10-26
D9.2. Modelling and design of recycling process. The results of the comprehensive, software-based thermo-chemical modelling of the drafted process technology will be condensed and prepared for public release (work within Tasks 9.2 and 9.3; Deliverable leader: Accurec) [M15].
HELIS Project (ID: 666221)
Last updated on: 2017-10-26
D9.1. Review of recycling processes with directions for Li-S battery recycling. A general overview of recycling processes in the field of battery recycling will be used for the determination of Li-S battery recycling steps (work within Task 9.1; Deliverable leader: Accurec) [M9].
HELIS Project (ID: 666221)
Last updated on: 2017-10-26
D2.1. Definition of the starting chemical environment. As a starting point, the Li-S cell components (host matrix and electrolyte) developed within the EUROLIS project will be used; the optimal electrode composition, electrode thickness, and electrolyte quantity will all subse...
HELIS Project (ID: 666221)
Last updated on: 2017-10-26
Periodic Reporting for period 1 - HELIS (High energy lithium sulphur cells and batteries)
LSBs are viable candidate for the commercialisation among all post Li-ion battery technologies due to their high theoretical energy density and cost effectiveness. Despite many efforts, there are remaining issues that need to be solved and this will provide final direction of...
Programme: H2020-EU.2.1.3.2.
Record Number: 198382
Last updated on: 2017-05-19
[PROGRAMME]
Record Number: 665017
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List retrieved on: 2017-11-23
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