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CORDIS

Securely Advancing Future EVs with Li-IOn batteries through Optimized Pathways

CORDIS proporciona enlaces a los documentos públicos y las publicaciones de los proyectos de los programas marco HORIZONTE.

Los enlaces a los documentos y las publicaciones de los proyectos del Séptimo Programa Marco, así como los enlaces a algunos tipos de resultados específicos, como conjuntos de datos y «software», se obtienen dinámicamente de OpenAIRE .

Resultado final

Eco-design guidelines towards sustainable Gen3 LIBs (se abrirá en una nueva ventana)

Report on comprehensive eco-design framework employing the safe and sustainable by design (SSbD) principles to reduce negative impacts to human health and the environment following a life-cycle thinking. The guidelines will integrate features of safety (based on thresholds for both human and environmental impacts) and circularity with sustainability aiming to reduce their environmental footprint during their entire life cycle (materials, production, use and end-of-life).Refers to task 7.1.

Report on the end-of-life management (se abrirá en una nueva ventana)

The report will introduce a proactive management approach for the end-of-life phase of the project’s solutions and products involve a comprehensive exploration to pinpoint potential safety, environmental, social, and economic benefits, impacts, and concerns considering different recovering, recycling, refurbishing or reusing strategies of SAFELOOP raw materials, components, cells, and batteries.Refers to Task 7.2.

Dissemination and communication plan (se abrirá en una nueva ventana)

In the dissemination and communication and dissemination plan SAFELOOP’s strategy will be set out to maximise the impact of the project, to increase its visibility, and to ensure that project outputs reach a wide audience of relevant stakeholders.Refers to Task 8.1.

Secure material supply and green life cycle (se abrirá en una nueva ventana)

Report on assessment of the environmental and social impacts induced by SAFELOOP solutions following a life-cycle perspective in the context of the SSbD framework.Refers to Task 7.3.

Data Management Plan (se abrirá en una nueva ventana)

DMP is a document describing how SAFELOOP will manage data throughout the project life cycle. DMP describes the technical and administrative management of data. DMP ensures and maximizes the openness, findability, exploitation, and good management of all data generated and handled in the project.  Refers to Task 1.3.

Publicaciones

RECOVERING VALUABLE MATERIALS FROM SPENT LITHIUM-ION BATTERIES USING DIRECT RECYCLING TECHNOLOGY

Autores: Viacheslav Barsukov, Borys Haliuk, Roman Derkach, Artem Mishuk, Volodymyr Khomenko, Iryna Makyeyeva, Maksim Gribov, Ihor Kovalchuk, Mansoor Qureshi, Michaelangelo Monterroso, Oleg Rubash
Publicado en: Battery 2030+’s 5th Annual Conference, 2025
Editor: Uppsala University

RECOVERING VALUABLE MATERIALS FROM SPENT LITHIUM-ION BATTERIES VIA DIRECT RECYCLING & ELECTROCHEMICAL METHODS

Autores: Viacheslav Barsukov, Borys Haliuk, Roman Derkach, Artem Mishuk, Olexander Potapenko, Volodymyr Khomenko, Iryna Makyeyeva, Benjamin Sean Van Aken, Abigail Persell, and Igor V. Barsukov
Publicado en: Sustainable Science Development: Transforming Industries and Society, 2025
Editor: Humboldt Kolleg

Production of high-purity nanostructured Ni-Co alloy and other valuable products by recycling spent lithium-ion batteries

Autores: "V. Barsukov, B. Haliuk, R. Derkach, A. Mishuk, V. Khomenko, I. Makyeyeva, M. Durbin, A. Doninger, M. Kubakh, I. Barsukov"""
Publicado en: 22nd International Conference on Nanosciences & Nanotechnologies (NN25), 2025
Editor: Aristotle University Research Dissemination Center of Thessaloniki (KEDEA)

SYNTHESIS AND INTEGRATION OF NANO-STRUCTURED SILICON INTO ANODE ACTIVE MATERIALS OF LITHIUM-ION BATTERIES

Autores: Viacheslav Barsukov, Nathalie Herlin-Boime, Suzy Surble, Pierre Lonchambon, Volodymyr Khomenko, Emily Schmidt, Anna Doninger, Karenna Pletcher, Bruce Wells, Mayya L. Barsukov
Publicado en: Battery 2030+’s 5th Annual Conference, 2025
Editor: Uppsala University

Enhancing the performance of Ni-rich Li[Ni<sub>0.88</sub>Co<sub>0.09</sub>Mn<sub>0.03</sub>]O<sub>2</sub> cathode material using surface coating (se abrirá en una nueva ventana)

Autores: Hossein Rostami; Parisa Mehdipour; Tao Hu; Palanivel Molaiyan; Pekka Tynjälä; Ulla Lassi
Publicado en: Sustainable Energy &amp; Fuels, 2025, ISSN 2398-4902
Editor: The Royal Society of Chemistry
DOI: 10.1039/D5SE00052A

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