Batteries based on fluoride shuttle MA Reddy, M Fichtner Journal of Materials Chemistry 21 (43), 17059-17062, 2011 | 516 | 2011 |
Synthesis and properties of magnesium tetrahydroborate, Mg (BH 4) 2 K Chłopek, C Frommen, A Léon, O Zabara, M Fichtner Journal of Materials Chemistry 17 (33), 3496-3503, 2007 | 377 | 2007 |
A new class of non-corrosive, highly efficient electrolytes for rechargeable magnesium batteries Z Zhao-Karger, MEG Bardaji, O Fuhr, M Fichtner Journal of Materials Chemistry A 5 (22), 10815-10820, 2017 | 363 | 2017 |
Performance improvement of magnesium sulfur batteries with modified non‐nucleophilic electrolytes Z Zhao‐Karger, X Zhao, D Wang, T Diemant, RJ Behm, M Fichtner Advanced Energy Materials 5 (3), 1401155, 2015 | 354 | 2015 |
Nanotechnological aspects in materials for hydrogen storage M Fichtner Advanced Engineering Materials 7 (6), 443-455, 2005 | 320 | 2005 |
Microstructure devices for applications in thermal and chemical process engineering K Schubert, J Brandner, M Fichtner, G Linder, U Schygulla, A Wenka Microscale Thermophysical Engineering 5 (1), 17-39, 2001 | 316 | 2001 |
Performance study of magnesium–sulfur battery using a graphene based sulfur composite cathode electrode and a non-nucleophilic Mg electrolyte BP Vinayan, Z Zhao-Karger, T Diemant, VSK Chakravadhanula, ... Nanoscale 8 (6), 3296-3306, 2016 | 287 | 2016 |
The controlled oxidation of hydrogen from an explosive mixture of gases using a microstructured reactor/heat exchanger and Pt/Al2O3 catalyst MT Janicke, H Kestenbaum, U Hagendorf, F Schüth, M Fichtner, ... Journal of Catalysis 191 (2), 282-293, 2000 | 264 | 2000 |
Toward Highly Reversible Magnesium–Sulfur Batteries with Efficient and Practical Mg[B(hfip)4]2 Electrolyte Z Zhao-Karger, R Liu, W Dai, Z Li, T Diemant, BP Vinayan, ... ACS Energy Letters 3 (8), 2005-2013, 2018 | 263 | 2018 |
Fluoride ion batteries: Theoretical performance, safety, toxicity, and a combinatorial screening of new electrodes F Gschwind, G Rodriguez-Garcia, DJS Sandbeck, A Gross, M Weil, ... Journal of Fluorine Chemistry 182, 76-90, 2016 | 263 | 2016 |
Interface in solid-state lithium battery: challenges, progress, and outlook SA Pervez, MA Cambaz, V Thangadurai, M Fichtner ACS applied materials & interfaces 11 (25), 22029-22050, 2019 | 229 | 2019 |
Preparation of microstructure compatible porous supports by sol–gel synthesis for catalyst coatings K Haas-Santo, M Fichtner, K Schubert Applied Catalysis A: General 220 (1-2), 79-92, 2001 | 229 | 2001 |
Small Ti clusters for catalysis of hydrogen exchange in NaAlH4 M Fichtner, O Fuhr, O Kircher, J Rothe Nanotechnology 14 (7), 778, 2003 | 217 | 2003 |
Disordered lithium-rich oxyfluoride as a stable host for enhanced Li+ intercalation storage R Chen, S Ren, M Knapp, D Wang, R Witter, M Fichtner, H Hahn Adv. Energy Mater 5 (9), 1401814, 2015 | 215 | 2015 |
Towards stable and efficient electrolytes for room-temperature rechargeable calcium batteries Z Li, O Fuhr, M Fichtner, Z Zhao-Karger Energy & Environmental Science 12 (12), 3496-3501, 2019 | 212 | 2019 |
Altered thermodynamic and kinetic properties of MgH 2 infiltrated in microporous scaffold Z Zhao-Karger, J Hu, A Roth, D Wang, C Kübel, W Lohstroh, M Fichtner Chemical communications 46 (44), 8353-8355, 2010 | 212 | 2010 |
On the interaction of dihydrogen with aromatic systems O Hübner, A Glöss, M Fichtner, W Klopper The Journal of Physical Chemistry A 108 (15), 3019-3023, 2004 | 203 | 2004 |
Rechargeable batteries of the future—the state of the art from a BATTERY 2030+ perspective M Fichtner, K Edström, E Ayerbe, M Berecibar, A Bhowmik, IE Castelli, ... Advanced Energy Materials 12 (17), 2102904, 2022 | 201 | 2022 |
Exploits, advances and challenges benefiting beyond Li-ion battery technologies A El Kharbachi, O Zavorotynska, M Latroche, F Cuevas, V Yartys, ... Journal of Alloys and Compounds 817, 153261, 2020 | 199 | 2020 |
Insight into sodium insertion and the storage mechanism in hard carbon M Anji Reddy, M Helen, A Groß, M Fichtner, H Euchner ACS Energy Letters 3 (12), 2851-2857, 2018 | 195 | 2018 |