Nicolò Minafra
Affiliations: | Justus-Liebig-Universität Giessen, Gießen, Hessen, Germany |
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Publications
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Hogrefe K, Minafra N, Hanghofer I, et al. (2022) Opening Diffusion Pathways through Site Disorder: The Interplay of Local Structure and Ion Dynamics in the Solid Electrolyte LiPGeSI as Probed by Neutron Diffraction and NMR. Journal of the American Chemical Society. 144: 1795-1812 |
Flores-González N, Minafra N, Dewald G, et al. (2021) Mechanochemical Synthesis and Structure of Lithium Tetrahaloaluminates, LiAlX (X = Cl, Br, I): A Family of Li-Ion Conducting Ternary Halides. Acs Materials Letters. 3: 652-657 |
Zhou L, Minafra N, Zeier WG, et al. (2021) Innovative Approaches to Li-Argyrodite Solid Electrolytes for All-Solid-State Lithium Batteries. Accounts of Chemical Research. 54: 2717-2728 |
Hogrefe K, Minafra N, Zeier WG, et al. (2021) Tracking Ions the Direct Way: Long-Range Li Dynamics in the Thio-LISICON Family LiMCh (M = Sn, Ge; Ch = S, Se) as Probed by Li NMR Relaxometry and Li Spin-Alignment Echo NMR. The Journal of Physical Chemistry. C, Nanomaterials and Interfaces. 125: 2306-2317 |
Culver SP, Squires AG, Minafra N, et al. (2020) Evidence for a Solid-Electrolyte Inductive Effect in the Superionic Conductor LiGeSnPS. Journal of the American Chemical Society |
Minafra N, Kraft MA, Bernges T, et al. (2020) Local Charge Inhomogeneity and Lithium Distribution in the Superionic Argyrodites LiPSX (X = Cl, Br, I). Inorganic Chemistry |
Ohno S, Banik A, Dewald GF, et al. (2020) Materials design of ionic conductors for solid state batteries Progress in Energy. 2: 022001 |
Ohno S, Bernges T, Buchheim J, et al. (2020) How Certain Are the Reported Ionic Conductivities of Thiophosphate-Based Solid Electrolytes? An Interlaboratory Study Acs Energy Letters. 5: 910-915 |
Schlem R, Bernges T, Li C, et al. (2020) Lattice Dynamical Approach for Finding the Lithium Superionic Conductor Li3ErI6 Acs Applied Energy Materials. 3: 3684-3691 |
Gautam A, Sadowski M, Prinz N, et al. (2019) Rapid Crystallization and Kinetic Freezing of Site-Disorder in the Lithium Superionic Argyrodite Li6PS5Br Chemistry of Materials. 31: 10178-10185 |