Li-rich anti-perovskites with high specific capacity as novel cathode materials for lithium-ion batteries
duration: 3 years (2023-2026)
project number: 516651026 (LINK)
funding: 400.000 €
project members: • Group „Functional Crystals in the Nanoscale”, Dr. Nico Gräßler, IFF (IFW DD)
• Group „Correlated Quantum Materials”, Prof. Klingeler, Kirchhoff Institute for Physics (University Heidelberg)
LUKSIAK Lithium-basierte, umweltfreundliche, kostengünstige und stabile Ionen-Akku-Kathodenmaterialien
duration: 2 years (2019 – 2021)
funding: 500.000 €
project members: • Group „Functional Crystals in the Nanoscale” IFF (IFW DD)
• Group “Analytics for Energy Storage Systems” IKM (IFW DD)
The LUKSIAK project (project-ID: 100350438) is funded by the European Social Fund (ESF) and the Sächsische Aufbaubank (SAB).
Two PhD students are supported by IFW's internal Excellence Program on "Nematic phenomena in topotactically designed antiperovskites".
duration: 3 years (2018 – 2021)
funding: 180.000 €
As part of the Lab2Lab project (Animatos, 2021), funded by the Graduate Academy of TU Dresden, a student exchange between the University of Oslo and the University of Dresden/IFW DD was made possible with a three-month stay.
2023 Front Cover Green Chemistry
2022 Solid-State Battery (Li2Fe)SO as cathode material
Lange Nacht der Wissenschaft
2021 YouTube Li-ion batteries: eco-friendly and low-cost cathodes
IFW Press Release Material with advantageous features
Leibniz-News Effizient, umweltfreundlich, günstig
2024
L. Singer, B. Dong, M.A.A. Mohamed, F.L. Carstens, S. Hampel, N. Gräßler, R. Klingeler
Separating Cationic and Anionic Redox Activity in the Lithium-Rich Antiperovskite (Li2Fe)SO
ACS Applied Materials & Interfaces 16, 40873–40880 (2024) URL
2023
L. Singer, M.A.A. Mohamed, H. Hahn, I.G. Gonzalez Martinez, M. Hantusch, K. Wenelska, E. Mijowska, B. Büchner, S. Hampel, N. Gräßler, R. Klingeler
Elucidating the electrochemical reaction mechanism of lithium-rich antiperovskite cathodes for lithium-ion batteries as exemplified by (Li2Fe)SeO
Journal of Materials Chemistry A 11, 14294-14303 (2023) URL
M.A.A. Mohamed, H.A.A. Saadallah, I.G. Gonzalez Martinez, M. Hantusch, M. Valldor, B. Büchner, S. Hampel, N. Gräßler
Mechanochemical synthesis of Li-rich (Li2Fe)SO cathode for Li-ion batteries
Green Chemistry 1-10 (2023) URL
M.A.A. Mohamed, L. Singer, H. Hahn, D. Djendjur, A. Özkara, E. Thauer, I.G. Gonzalez Martinez, M. Hantusch, B. Büchner, S. Hampel, R. Klingeler, N. Gräßler
Lithium-rich antiperovskite (Li2Fe)SeO: A high-performance cathode material for lithium-ion batteries
Journal of Power Sources 558, 232547/1-7 (2023) URL
2021
M. Mohamed, M. Gorbunov, M. Valldor, S. Hampel, N. Gräßler, D. Mikhailova
Tuning the electrochemical properties by anionic substitution of Li-rich antiperovskite (Li2Fe)S1−xSexO cathodes for Li-ion batteries
Journal of Materials Chemistry A | Volume: 9 | Issue: 40 | P. 23095 –23105 | URL
M.V. Gorbunov, S. Carocci, I.G. Gonzalez Martinez, V. Baran, D. Mikhailova
Studies of Li2Fe0.9M0.1SO antiperovskite materials for lithium-ion batteries: the role of partial Fe2+ to M2+ substitution
Frontiers in Energy Research | Volume: 9 | P. 657962/1-10 | URL
2020
M.V. Gorbunov, S. Carrocci, S. Maletti, M. Valldor, T. Doert, S. Hampel, I. Gonzalez Martinez, D. Mikhailova, N. Gräßler
Synthesis of (Li2Fe1–yMny)SO Antiperovskites with Comprehensive Investigations of (Li2Fe0.5Mn0.5)SO as Cathode in Li-ion Batteries
Inorganic Chemistry | Volume: 59 | Issue: 21 | P. 15626-15635 | URL