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Artikel 1 Photovoltaic Wafering Silicon Kerf Loss as Raw Material: Example of Negative Electrode for Lithium‐Ion Battery **
Enthalten in ChemElectroChem 18.09.2023. 14 S.
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Artikel 2 Editorial to the Special Issue: How to Reinvent the Ways to Invent the Batteries of the Future – the Battery 2030+ Large‐Scale Research Initiative Roadmap
Enthalten in Advanced energy materials Bd. 12, 2022, Nr. 17. 4 S.
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Artikel 3 Editorial to the Special Issue: How to Reinvent the Ways to Invent the Batteries of the Future – the Battery 2030+ Large‐Scale Research Initiative Roadmap (Adv. Energy Mater. 17/2022)
Enthalten in Advanced energy materials Bd. 12, 2022, Nr. 17. 1 S.
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Artikel 4 Ternary Ionogel Electrolytes Enable Quasi‐Solid‐State Potassium Dual‐Ion Intercalation Batteries
Enthalten in Advanced energy & sustainability research Bd. 3, 2022, Nr. 1. 1 S.
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Artikel 5 A Roadmap for Transforming Research to Invent the Batteries of the Future Designed within the European Large Scale Research Initiative BATTERY 2030+
Enthalten in Advanced energy materials 21.01.2022. 42 S.
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Artikel 6 Ternary Ionogel Electrolytes Enable Quasi‐Solid‐State Potassium Dual‐Ion Intercalation Batteries
Enthalten in Advanced energy & sustainability research 08.10.2021. 12 S.
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Artikel 7 Interactions and Transport in Highly Concentrated LiTFSI‐based Electrolytes
Enthalten in ChemPhysChem Bd. 21, 2020, Nr. 11: 1166-1176. 11 S.
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Artikel 8 Micro versus Nano: Impact of Particle Size on the Flow Characteristics of Silicon Anode Slurries
Enthalten in Energy technology Bd. 8, 2020, Nr. 7. 7 S.
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Artikel 9 Sulfolane‐Based Ethylene Carbonate‐Free Electrolytes for LiNi 0.6 Mn 0.2 Co 0.2 O 2 −Li 4 Ti 5 O 12 Batteries
Enthalten in Batteries & supercaps Bd. 3, 2020, Nr. 2: 201-207. 7 S.
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Artikel 10 Efficient BiVO 4 Photoanodes by Postsynthetic Treatment: Remarkable Improvements in Photoelectrochemical Performance from Facile Borate Modification
Enthalten in Angewandte Chemie Bd. 131, 2019, Nr. 52: 19203-19209. 7 S.
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