Ben Breitung
Cited by
Cited by
High entropy oxides for reversible energy storage
A Sarkar, L Velasco, DI Wang, Q Wang, G Talasila, L de Biasi, C Kübel, ...
Nature communications 9 (1), 1-9, 2018
High‐entropy oxides: fundamental aspects and electrochemical properties
A Sarkar, Q Wang, A Schiele, MR Chellali, SS Bhattacharya, D Wang, ...
Advanced Materials 31 (26), 1806236, 2019
Multi-anionic and-cationic compounds: new high entropy materials for advanced Li-ion batteries
Q Wang, A Sarkar, D Wang, L Velasco, R Azmi, SS Bhattacharya, ...
Energy & Environmental Science 12 (8), 2433-2442, 2019
Printed electronics based on inorganic semiconductors: From processes and materials to devices
SK Garlapati, M Divya, B Breitung, R Kruk, H Hahn, S Dasgupta
Advanced Materials 30 (40), 1707600, 2018
High-entropy energy materials: Challenges and new opportunities
Y Ma, Y Ma, Q Wang, S Schweidler, M Botros, T Fu, H Hahn, ...
Energy & Environmental Science 14 (5), 2883-2905, 2021
High entropy oxides as anode material for Li-ion battery applications: A practical approach
Q Wang, A Sarkar, Z Li, Y Lu, L Velasco, SS Bhattacharya, T Brezesinski, ...
Electrochemistry Communications 100, 121-125, 2019
The critical role of fluoroethylene carbonate in the gassing of silicon anodes for lithium-ion batteries
A Schiele, B Breitung, T Hatsukade, BB Berkes, P Hartmann, J Janek, ...
ACS energy letters 2 (10), 2228-2233, 2017
High entropy oxides: The role of entropy, enthalpy and synergy
A Sarkar, B Breitung, H Hahn
Scripta Materialia 187, 43-48, 2020
CFx Derived Carbon–FeF2 Nanocomposites for Reversible Lithium Storage
MA Reddy, B Breitung, VSK Chakravadhanula, C Wall, M Engel, C Kübel, ...
Advanced Energy Materials 3 (3), 308-313, 2013
In situ and operando atomic force microscopy of high-capacity nano-silicon based electrodes for lithium-ion batteries
B Breitung, P Baumann, H Sommer, J Janek, T Brezesinski
Nanoscale 8 (29), 14048-14056, 2016
On the homogeneity of high entropy oxides: An investigation at the atomic scale
MR Chellali, A Sarkar, SH Nandam, SS Bhattacharya, B Breitung, H Hahn, ...
Scripta Materialia 166, 58-63, 2019
Hierarchical carbon with high nitrogen doping level: A versatile anode and cathode host material for long-life lithium-ion and lithium–sulfur batteries
C Reitz, B Breitung, A Schneider, D Wang, M von der Lehr, T Leichtweiss, ...
ACS applied materials & interfaces 8 (16), 10274-10282, 2016
[Ag 115 S 34 (SCH 2 C 6 H 4 t Bu) 47 (dpph) 6]: synthesis, crystal structure and NMR investigations of a soluble silver chalcogenide nanocluster
S Bestgen, O Fuhr, B Breitung, VSK Chakravadhanula, G Guthausen, ...
Chemical science 8 (3), 2235-2240, 2017
Improving the Energy Density and Power Density of CFx by Mechanical Milling: A Primary Lithium Battery Electrode
MA Reddy, B Breitung, M Fichtner
ACS Applied Materials & Interfaces 5 (21), 11207-11211, 2013
High‐Entropy Metal–Organic Frameworks for Highly Reversible Sodium Storage
Y Ma, Y Ma, SL Dreyer, Q Wang, K Wang, D Goonetilleke, A Omar, ...
Advanced Materials 33 (34), 2101342, 2021
Influence of Humidity on the Performance of Electrolyte-Gated Transistors and Circuits
G Cadilha Marques, F von Seggern, S Dehm, B Breitung, H Hahn, ...
Lithium containing layered high entropy oxide structures
J Wang, Y Cui, Q Wang, K Wang, X Huang, D Stenzel, A Sarkar, R Azmi, ...
Scientific reports 10 (1), 1-13, 2020
Microwave synthesis of high-quality and uniform 4 nm ZnFe2O4 nanocrystals for application in energy storage and nanomagnetics
C Suchomski, B Breitung, R Witte, M Knapp, S Bauer, T Baumbach, ...
Beilstein journal of nanotechnology 7 (1), 1350-1360, 2016
Spinel to rock-salt transformation in high entropy oxides with Li incorporation
J Wang, D Stenzel, R Azmi, S Najib, K Wang, J Jeong, A Sarkar, Q Wang, ...
Electrochem 1 (1), 60-74, 2020
High‐Entropy Energy Materials in the Age of Big Data: A Critical Guide to Next‐Generation Synthesis and Applications
Q Wang, L Velasco, B Breitung, V Presser
Advanced Energy Materials 11 (47), 2102355, 2021
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Articles 1–20