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Hin und zurück – die Entwicklung von LiNiO<sub>2</sub> als Kathodenaktivmaterial.
- Published in:
- Angewandte Chemie, 2019, v. 131, n. 31, p. 10542, doi. 10.1002/ange.201812472
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- Article
Li<sub>47</sub>B<sub>3</sub>P<sub>14</sub>N<sub>42</sub>-A Lithium Nitridoborophosphate with [P<sub>3</sub>N<sub>9</sub>]<sup>12−</sup>, [P<sub>4</sub>N<sub>10</sub>]<sup>10−</sup>, and the Unprecedented [B<sub>3</sub>P<sub>3</sub>N<sub>13</sub>]<sup>15−</sup> Ion
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- Angewandte Chemie, 2017, v. 129, n. 17, p. 4884, doi. 10.1002/ange.201701084
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- Article
Ein- oder Zwei-Elektronen-Transfer? - Zur Bestimmung des Entladeprodukts in Natrium-Sauerstoff-Batterien.
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- Angewandte Chemie, 2016, v. 128, n. 15, p. 4716, doi. 10.1002/ange.201510856
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- Article
Gas Evolution in Operating Lithium-Ion Batteries Studied In Situ by Neutron Imaging.
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- Scientific Reports, 2015, p. 15627, doi. 10.1038/srep15627
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- Article
Understanding the evolution of lithium dendrites at Li<sub>6.25</sub>Al<sub>0.25</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12</sub> grain boundaries via operando microscopy techniques.
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- Nature Communications, 2023, v. 14, n. 1, p. 1, doi. 10.1038/s41467-023-36792-7
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- Article
Deposition of Sodium Metal at the Copper‐NaSICON Interface for Reservoir‐Free Solid‐State Sodium Batteries.
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- Advanced Energy Materials, 2024, v. 14, n. 15, p. 1, doi. 10.1002/aenm.202302729
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- Article
The Impact of Microstructure on Filament Growth at the Sodium Metal Anode in All‐Solid‐State Sodium Batteries.
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- Advanced Energy Materials, 2023, v. 13, n. 48, p. 1, doi. 10.1002/aenm.202302322
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Evaluating the Use of Critical Current Density Tests of Symmetric Lithium Transference Cells with Solid Electrolytes.
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- Advanced Energy Materials, 2023, v. 13, n. 45, p. 1, doi. 10.1002/aenm.202302383
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- Article
In Situ Observation of Room‐Temperature Magnesium Metal Deposition on a NASICON/IL Hybrid Solid Electrolyte.
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- Advanced Energy Materials, 2023, v. 13, n. 44, p. 1, doi. 10.1002/aenm.202302525
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- Article
A Roadmap for Solid‐State Batteries.
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- Advanced Energy Materials, 2023, v. 13, n. 43, p. 1, doi. 10.1002/aenm.202301886
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- Article
To Be or Not to Be – Is MgSc<sub>2</sub>Se<sub>4</sub> a Mg‐Ion Solid Electrolyte?
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- Advanced Energy Materials, 2023, v. 13, n. 40, p. 1, doi. 10.1002/aenm.202301980
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- Article
Visualizing Reaction Fronts and Transport Limitations in Solid‐State Li–S Batteries via Operando Neutron Imaging.
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- Advanced Energy Materials, 2023, v. 13, n. 17, p. 1, doi. 10.1002/aenm.202203426
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- Article
Visualizing the Chemical Incompatibility of Halide and Sulfide‐Based Electrolytes in Solid‐State Batteries.
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- Advanced Energy Materials, 2023, v. 13, n. 6, p. 1, doi. 10.1002/aenm.202203673
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- Article
Kinetics and Pore Formation of the Sodium Metal Anode on NASICON‐Type Na<sub>3.4</sub>Zr<sub>2</sub>Si<sub>2.4</sub>P<sub>0.6</sub>O<sub>12</sub> for Sodium Solid‐State Batteries.
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- Advanced Energy Materials, 2023, v. 13, n. 5, p. 1, doi. 10.1002/aenm.202202712
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- Article
Current‐Dependent Lithium Metal Growth Modes in "Anode‐Free" Solid‐State Batteries at the Cu|LLZO Interface.
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- Advanced Energy Materials, 2023, v. 13, n. 1, p. 1, doi. 10.1002/aenm.202203174
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- Article
Enhancing the Dendrite Tolerance of NaSICON Electrolytes by Suppressing Edge Growth of Na Electrode along Ceramic Surface (Adv. Energy Mater. 40/2022).
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- Advanced Energy Materials, 2022, v. 12, n. 40, p. 1, doi. 10.1002/aenm.202270164
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- Article
Enhancing the Dendrite Tolerance of NaSICON Electrolytes by Suppressing Edge Growth of Na Electrode along Ceramic Surface.
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- Advanced Energy Materials, 2022, v. 12, n. 40, p. 1, doi. 10.1002/aenm.202201680
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- Article
Designing Cathodes and Cathode Active Materials for Solid‐State Batteries.
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- Advanced Energy Materials, 2022, v. 12, n. 35, p. 1, doi. 10.1002/aenm.202201425
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- Article
Increasing the Pressure‐Free Stripping Capacity of the Lithium Metal Anode in Solid‐State‐Batteries by Carbon Nanotubes.
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- Advanced Energy Materials, 2022, v. 12, n. 26, p. 1, doi. 10.1002/aenm.202201125
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- Article
Fast Charging of Lithium‐Ion Batteries: A Review of Materials Aspects.
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- Advanced Energy Materials, 2021, v. 11, n. 33, p. 1, doi. 10.1002/aenm.202101126
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- Article
Lithium Argyrodite as Solid Electrolyte and Cathode Precursor for Solid‐State Batteries with Long Cycle Life.
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- Advanced Energy Materials, 2021, v. 11, n. 31, p. 1, doi. 10.1002/aenm.202101370
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- Article
Influence of Crystallinity of Lithium Thiophosphate Solid Electrolytes on the Performance of Solid‐State Batteries.
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- Advanced Energy Materials, 2021, v. 11, n. 24, p. 1, doi. 10.1002/aenm.202100654
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- Article
Polycrystalline and Single Crystalline NCM Cathode Materials—Quantifying Particle Cracking, Active Surface Area, and Lithium Diffusion.
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- Advanced Energy Materials, 2021, v. 11, n. 18, p. 1, doi. 10.1002/aenm.202003400
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- Article
Nitrogen-Doped Carbon Electrodes: Influence of Microstructure and Nitrogen Configuration on the Electrical Conductivity of Carbonized Polyacrylonitrile and Poly(ionic liquid) Blends.
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- Macromolecular Chemistry & Physics, 2015, v. 216, n. 19, p. 1930, doi. 10.1002/macp.201500169
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Macromol. Chem. Phys. 19/2015.
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- Macromolecular Chemistry & Physics, 2015, v. 216, n. 19, p. 1909, doi. 10.1002/macp.201570059
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- Article
Large Zeolite H-ZSM-5 Crystals as Models for the Methanol-to-Hydrocarbons Process: Bridging the Gap between Single-Particle Examination and Bulk Catalyst Analysis.
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- Chemistry - A European Journal, 2013, v. 19, n. 26, p. 8533, doi. 10.1002/chem.201203351
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- Article
A Biomimetic Principle for the Chemical Modification of Metal Surfaces: Synthesis of Tripodal Catecholates as Analogues of Siderophores and Mussel Adhesion Proteins.
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- Chemistry - A European Journal, 2011, v. 17, n. 31, p. 8596, doi. 10.1002/chem.201100715
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- Article
The Formation of Residual Lithium Compounds on Ni‐Rich NCM Oxides: Their Impact on the Electrochemical Performance of Sulfide‐Based ASSBs.
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- Advanced Functional Materials, 2024, v. 34, n. 21, p. 1, doi. 10.1002/adfm.202313252
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- Article
Overcoming Anode Instability in Solid‐State Batteries through Control of the Lithium Metal Microstructure.
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- Advanced Functional Materials, 2023, v. 33, n. 1, p. 1, doi. 10.1002/adfm.202211067
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- Article
C.G. Vayenas, S. Bebelis, C. Pliangos, S. Brosda, D. Tsiplakides: Electrochemical activation of catalysis: promotion, electrochemical promotion, and metal-support interaction.
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- Journal of Solid State Electrochemistry, 2002, v. 7, n. 1, p. 60, doi. 10.1007/s10008-002-0305-4
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- Article
Effect of Low-Temperature Al<sub>2</sub>O<sub>3</sub> ALD Coating on Ni-Rich Layered Oxide Composite Cathode on the Long-Term Cycling Performance of Lithium-Ion Batteries.
- Published in:
- Scientific Reports, 2019, v. 9, n. 1, p. N.PAG, doi. 10.1038/s41598-019-41767-0
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- Article
Transport Properties of Single Crystalline CeO<sub>2</sub>-ZrO<sub>2</sub>-Y<sub>2</sub>O<sub>3</sub> Solid Solutions.
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- Zeitschrift für Anorganische und Allgemeine Chemie, 2012, v. 638, n. 10, p. 1623, doi. 10.1002/zaac.201204114
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- Article
Li-Ion Conducting Garnet-Type Materials - Structure and Electrochemical Characterization.
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- Zeitschrift für Anorganische und Allgemeine Chemie, 2012, v. 638, n. 10, p. 1623, doi. 10.1002/zaac.201204113
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- Article
Towards the in-situ Characterization of Model All Solid state Batteries - Preparation of LiFePO<sub>4</sub> and LiPON Thin Films via Pulsed Laser Deposition.
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- Zeitschrift für Anorganische und Allgemeine Chemie, 2010, v. 636, n. 11, p. 2098, doi. 10.1002/zaac.201009100
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- Article
Mesoporous TiO<sub>2</sub> Photoelectrodes for Solar Hydrogen Generation.
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- Zeitschrift für Anorganische und Allgemeine Chemie, 2010, v. 636, n. 11, p. 2048, doi. 10.1002/zaac.201008026
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- Article
Synthesis, Crystal Growth and Structure of Substituted Mayenite.
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- Zeitschrift für Anorganische und Allgemeine Chemie, 2010, v. 636, n. 11, p. 2102, doi. 10.1002/zaac.201009108
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- Article
Nichtstöchiometrische Festkörper mit Ionen- und Elektronenleitfähigkeit - Objekte und Spielzeuge der Festkörperelektrochemie.
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- Zeitschrift für Anorganische und Allgemeine Chemie, 2002, v. 628, n. 9/10, p. 2134, doi. 10.1002/1521-3749(200209)628:9/10<2134::AID-ZAAC2134>3.0.CO;2-4
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- Article
Working Principle of an Ionic Liquid Interlayer During Pressureless Lithium Stripping on Li<sub>6.25</sub>Al<sub>0.25</sub>La<sub>3</sub>Zr<sub>2</sub>O<sub>12</sub> (LLZO) Garnet‐Type Solid Electrolyte.
- Published in:
- Batteries & Supercaps, 2021, v. 4, n. 7, p. 1145, doi. 10.1002/batt.202100015
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- Article
Improved Cycling Performance of High‐Nickel NMC by Dry Powder Coating with Nanostructured Fumed Al<sub>2</sub>O<sub>3</sub>, TiO<sub>2</sub>, and ZrO<sub>2</sub>: A Comparison.
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- Batteries & Supercaps, 2021, v. 4, n. 6, p. 1003, doi. 10.1002/batt.202100016
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- Article
Analysis of Charge Carrier Transport Toward Optimized Cathode Composites for All‐Solid‐State Li−S Batteries.
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- Batteries & Supercaps, 2021, v. 4, n. 1, p. 183, doi. 10.1002/batt.202000194
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- Article
The Sound of Batteries: An Operando Acoustic Emission Study of the LiNiO<sub>2</sub> Cathode in Li–Ion Cells.
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- Batteries & Supercaps, 2020, v. 3, n. 10, p. 965, doi. 10.1002/batt.202000205
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- Article
Cover Picture: The Sound of Batteries: An Operando Acoustic Emission Study of the LiNiO<sub>2</sub> Cathode in Li–Ion Cells (Batteries & Supercaps 10/2020).
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- Batteries & Supercaps, 2020, v. 3, n. 10, p. 961, doi. 10.1002/batt.202000206
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- Article
The Sound of Batteries: An Operando Acoustic Emission Study of the LiNiO<sub>2</sub> Cathode in Li–Ion Cells.
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- Batteries & Supercaps, 2020, v. 3, n. 10, p. 1021, doi. 10.1002/batt.202000099
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- Article
Li<sub>47</sub>B<sub>3</sub>P<sub>14</sub>N<sub>42</sub>-A Lithium Nitridoborophosphate with [P<sub>3</sub>N<sub>9</sub>]<sup>12−</sup>, [P<sub>4</sub>N<sub>10</sub>]<sup>10−</sup>, and the Unprecedented [B<sub>3</sub>P<sub>3</sub>N<sub>13</sub>]<sup>15−</sup> Ion
- Published in:
- Angewandte Chemie International Edition, 2017, v. 56, n. 17, p. 4806, doi. 10.1002/anie.201701084
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- Article
One- or Two-Electron Transfer? The Ambiguous Nature of the Discharge Products in Sodium-Oxygen Batteries.
- Published in:
- Angewandte Chemie International Edition, 2016, v. 55, n. 15, p. 4640, doi. 10.1002/anie.201510856
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- Article
A Metallic Room-Temperature Oxide Ion Conductor.
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- Angewandte Chemie International Edition, 2014, v. 53, n. 28, p. 7344, doi. 10.1002/anie.201402244
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- Article
Cover Feature: Pathways to Triplet or Singlet Oxygen during the Dissociation of Alkali Metal Superoxides: Insights by Multireference Calculations of Molecular Model Systems (Chem. Eur. J. 11/2020).
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- Chemistry - A European Journal, 2020, v. 26, n. 11, p. 2295, doi. 10.1002/chem.201905469
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- Article
Pathways to Triplet or Singlet Oxygen during the Dissociation of Alkali Metal Superoxides: Insights by Multireference Calculations of Molecular Model Systems.
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- Chemistry - A European Journal, 2020, v. 26, n. 11, p. 2395, doi. 10.1002/chem.201904110
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- Article
Emerging Halide Solid Electrolytes for Sodium Solid‐State Batteries: Structure, Conductivity, Paradigm of Applications.
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- Batteries & Supercaps, 2024, v. 7, n. 7, p. 1, doi. 10.1002/batt.202400005
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- Article
Cover Picture: Elucidating Gas Evolution of Prussian White Cathodes for Sodium‐ion Battery Application: The Effect of Electrolyte and Moisture (Batteries & Supercaps 4/2024).
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- Batteries & Supercaps, 2024, v. 7, n. 4, p. 1, doi. 10.1002/batt.202400167
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- Article