CORDIS provides links to public deliverables and publications of HORIZON projects.
Links to deliverables and publications from FP7 projects, as well as links to some specific result types such as dataset and software, are dynamically retrieved from OpenAIRE .
Deliverables
The state-of-the-art on multi-physics modeling of electrochemical energy storage systems will be assessed and the resulting document will be shared with the consortium. Both gel-based and all-solid-state Li-Ion technologies will be considered.
Evaluation of generic processes for ceramic and compositesThe main objective is to evaluate the generic processes developed previously and adapt them for as broad use as possible. The promising electrolyte candidates identified in WP7 will be ranked in terms of processability, costs and upscale production, always considering their physicochemical and electrochemical properties.
Environmental assessmentA prospective life cycle assessment LCA will be conducted by the VUB The full LCA will identify the key performance indicators for the environmental impact including climate change energy efficiency resource depletion toxicity during mining water footprint land usage and external cost calculation Furthermore the environmental impacts will be complemented with social impacts to highlight the excellence on sustainability
Study on the impact of future cell technologies on module and pack conceptThe goal is to evaluate the implication of ASSB properties on module and pack concepts One of the most significant property with a very high potential impact is the operating temperature which is usually higher than in the stateoftheart Li ion technologies
Roadmap for competitive production of all-solid batteries including considerations of other emerging technologiesThe roadmap will provide an overall vision of potential processes within the different stages of manufacturing and the impact they could provide in terms of cost quality performance safety and lifetime Special emphasis will be given to the applicability of the manufacturing solutions to the several emerging battery technology possibilities and the identification of potential breakthroughs related to production Furthermore the potential benefits and future markets of novel production Technologies will be identified and evaluated
Document with final Cell Requirement and Specification for Automotive and Stationary ApplicationThe top-level Li-ion cell specifications and requirements will be broken down from the requirements for an automotive and a stationary battery-system to provide a real industrial guideline. BMW is responsible for the automotive requirements and VARTA Storage for the stationary requirements.
VMB will develop and maintain a project website and corporative image including logo flyer rollups in order to create a project identity increase the awareness of IMAGE and provide the interested public with information concerning the project itself and other relevant topics and events
Publications
Author(s):
Caroline Hiebl, Patrick Loch, Marina Brinek, Maria Gombotz, Bernhard Gadermaier, Paul Heitjans, Josef Breu, H. Martin. R. Wilkening
Published in:
Chemistry of Materials, Issue 32/17, 2020, Page(s) 7445-7457, ISSN 0897-4756
Publisher:
American Chemical Society
DOI:
10.1021/acs.chemmater.0c02460
Author(s):
M. Gombotz, K. Hogrefe, R. Zettl, B. Gadermaier, H. Martin. R. Wilkening
Published in:
Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, Issue 379/2211, 2021, ISSN 1364-503X
Publisher:
Royal Society of London
DOI:
10.1098/rsta.2020.0434
Author(s):
Martin Philipp, Bernhard Gadermaier, Patrick Posch, Ilie Hanzu, Steffen Ganschow, Martin Meven, Daniel Rettenwander, Günther J. Redhammer, H. Martin R. Wilkening
Published in:
Advanced Materials Interfaces, Issue 7/16, 2020, Page(s) 2000450, ISSN 2196-7350
Publisher:
John Wiley & Sons
DOI:
10.1002/admi.202000450
Author(s):
M. Brinek, C. Hiebl, K. Hogrefe, I. Hanghofer, H. M. R. Wilkening
Published in:
The Journal of Physical Chemistry C, Issue 124/42, 2020, Page(s) 22934-22940, ISSN 1932-7447
Publisher:
American Chemical Society
DOI:
10.1021/acs.jpcc.0c06090
Author(s):
Roman Zettl, Katharina Hogrefe, Bernhard Gadermaier, Ilie Hanzu, Peter Ngene, Petra E. de Jongh, H. Martin R. Wilkening
Published in:
The Journal of Physical Chemistry C, Issue 125/27, 2021, Page(s) 15052-15060, ISSN 1932-7447
Publisher:
American Chemical Society
DOI:
10.1021/acs.jpcc.1c03789
Author(s):
Alexander Santiago, Xabier Judez, Julen Castillo, Iñigo Garbayo, Amaia Sáenz de Buruaga, Lixin Qiao, Giorgio Baraldi, José Antonio Coca-Clemente, Michel Armand, Chunmei Li, Heng Zhang
Published in:
The Journal of Physical Chemistry Letters, Issue 11/15, 2020, Page(s) 6133-6138, ISSN 1948-7185
Publisher:
American Chemical Society
DOI:
10.1021/acs.jpclett.0c01883
Author(s):
Nicola Boaretto, Iñigo Garbayo, Sona Valiyaveettil Sobhanraj, Amaia Quintela, Chunmei Li, Montse Casas-Cabanas, Frederic Aguesse
Published in:
Journal of Power Sources, Issue 502, 2021, Page(s) 229919, ISSN 0378-7753
Publisher:
Elsevier BV
DOI:
10.1016/j.jpowsour.2021.229919
Author(s):
Gebrekidan Gebresilassie Eshetu, Heng Zhang, Xabier Judez, Henry Adenusi, Michel Armand, Stefano Passerini and Egbert Figgemeier
Published in:
Nature Communications, Issue 5459/12, 2021, ISSN 2041-1723
Publisher:
Nature Publishing Group
DOI:
10.1038/s41467-021-25334-8
Author(s):
Felix Aupperle, Gebrekidan Gebresilassie Eshetu, Kevin W. Eberman, Ang Xioa, Jean-Sebastien Bridel, Egbert Figgemeier
Published in:
Journal of Materials Chemistry A, Issue 8/37, 2020, Page(s) 19573-19587, ISSN 2050-7488
Publisher:
Royal Society of Chemistry
DOI:
10.1039/d0ta05827k
Author(s):
Roman Zettl, Sarah Lunghammer, Bernhard Gadermaier, Athmane Boulaoued, Patrik Johansson,H. Martin R. Wilkening, Ilie Hanzu
Published in:
Advanced Energy Materials, Issue 11/16, 2021, Page(s) 2003542, ISSN 1614-6832
Publisher:
Wiley-VCH Verlag
DOI:
10.1002/aenm.202003542
Author(s):
Heng Zhang, Fangfang Chen, Oier Lakuntza, Uxue Oteo, Lixin Qiao, Maria Martinez‐Ibañez, Haijin Zhu, Javier Carrasco, Maria Forsyth, Michel Armand
Published in:
Angewandte Chemie, Issue 131/35, 2019, Page(s) 12198-12203, ISSN 0044-8249
Publisher:
John Wiley & Sons Ltd.
DOI:
10.1002/ange.201905794
Author(s):
Jakub Zagórski, Begoña Silván, Damien Saurel, Frédéric Aguesse, Anna Llordés
Published in:
ACS Applied Energy Materials, Issue 3/9, 2020, Page(s) 8344-8355, ISSN 2574-0962
Publisher:
American Chemical Society
DOI:
10.1021/acsaem.0c00935
Author(s):
Eveline Kuhnert, Lukas Ladenstein, Anna Jodlbauer, Christian Slugovc, Gregor Trimmel, H. Martin R. Wilkening, Daniel Rettenwander
Published in:
Cell Reports Physical Science, Issue 1/10, 2020, Page(s) 100214, ISSN 2666-3864
Publisher:
Elsevier
DOI:
10.1016/j.xcrp.2020.100214
Author(s):
Maria Gombotz, H. Martin R. Wilkening
Published in:
ACS Sustainable Chemistry & Engineering, Issue 9/2, 2021, Page(s) 743-755, ISSN 2168-0485
Publisher:
American Chemical Society
DOI:
10.1021/acssuschemeng.0c06694
Author(s):
Isabel Hanghofer, Bernhard Gadermaier, Alexandra Wilkening, Daniel Rettenwander, H. Martin R. Wilkening
Published in:
Dalton Transactions, 2019, ISSN 1477-9226
Publisher:
Royal Society of Chemistry
DOI:
10.1039/c9dt01786k
Author(s):
Isabel Hanghofer, Bernhard Gadermaier, H. Martin R. Wilkening
Published in:
Chemistry of Materials, 2019, ISSN 0897-4756
Publisher:
American Chemical Society
DOI:
10.1021/acs.chemmater.9b01435
Author(s):
Marina Brinek, Caroline Hiebl, H. Martin R. Wilkening
Published in:
Chemistry of Materials, Issue 32/11, 2020, Page(s) 4754-4766, ISSN 0897-4756
Publisher:
American Chemical Society
DOI:
10.1021/acs.chemmater.0c01367
Author(s):
Hannes Kühnle, Edwin Knobbe and Egbert Figgemeier
Published in:
Journal of The Electrochemical Society, Issue 168, 2021, Page(s) 020510, ISSN 0013-4651
Publisher:
Electrochemical Society, Inc.
DOI:
10.1149/1945-7111/abdeeb
Author(s):
Bernhard Gadermaier, Katharina Hogrefe, Prof. Dr. Paul Heitjans, Prof. Dr. H. Martin R. Wilkening
Published in:
European Journal of Inorganic Chemistry, 2021, Page(s) 1028-1033, ISSN 1434-1948
Publisher:
John Wiley & Sons Ltd.
DOI:
10.1002/ejic.202000941
Author(s):
Lukas Ladenstein, Sanja Simic, Gerald Kothleitner, Daniel Rettenwander, H. Martin R. Wilkening
Published in:
The Journal of Physical Chemistry C, Issue 124/31, 2020, Page(s) 16796-16805, ISSN 1932-7447
Publisher:
American Chemical Society
DOI:
10.1021/acs.jpcc.0c03558
Author(s):
Patrick Posch, Sarah Lunghammer, Stefan Berendts, Steffen Ganschow, Günther J. Redhammer, Alexandra Wilkening, Martin Lerch, Bernhard Gadermaier, Daniel Rettenwander, H. Martin R. Wilkening
Published in:
Energy Storage Materials, Issue 24, 2020, Page(s) 220-228, ISSN 2405-8297
Publisher:
Elsevier
DOI:
10.1016/j.ensm.2019.08.017
Author(s):
Katharina Hogrefe, Isabel Hanghofer, H. Martin R. Wilkening
Published in:
The Journal of Physical Chemistry C, Issue 125/41, 2021, Page(s) 22457-22463, ISSN 1932-7447
Publisher:
American Chemical Society
DOI:
10.1021/acs.jpcc.1c06242
Author(s):
Katharina Hogrefe, Nicolò Minafra, Wolfgang G. Zeier, H. Martin R. Wilkening
Published in:
The Journal of Physical Chemistry C, Issue 125/4, 2021, Page(s) 2306-2317, ISSN 1932-7447
Publisher:
American Chemical Society
DOI:
10.1021/acs.jpcc.0c10224
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