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1. Understanding the Superior Cycling Performance of Si Anode in Highly Concentrated Phosphonium-Based Ionic Liquid Electrolyte

2. Application de la nano-tomographie FIB/SEM à l’étude des propriétés électriques des batteries Lithium-ion

3. Étude de l'impact de la microstructure sur les propriétés électriques des batteries lithium-ion : simulations de microstructures réelles et génération d'architectures numériques

4. Study of the impact of microstructure on electrical properties in lithium-ion batteries; simulations on actual microstructures and generation of numerical architectures

5. Influence of solid-electrolyte interfaces on electronic and ionic dynamics in porous electrodes

6. Charge transport limitations in hierarchical composite electrodes of lithium-ion batteries

7. Contribution of the dielectric spectroscopy to the multiscale study of the electrode materials

8. Multi-Scale Characterization of Electronic and Ionic Limitations to Power Performance of Composite Electrodes Toward Ultra-High Surface Capacities

9. Caractérisation multi-échelle 2D et 3D d’électrodes pour batteries Li-ion

10. Ionic and electronic transport in composite electrodes for lithium batteries: in-situ dielectric spectroscopy study from low frequencies to microwaves

11. Étude diélectrique de matériaux composites pour batteries lithium-ion, des basses fréquences aux micro-ondes

12. Broadband dielectric spectroscopy of materials for lithium batteries: from low frequencies to microwaves

13. Broadband dielectric spectroscopy study of multiscale electronic transport in electroactive materials: morphology and particle size effects

14. Interest of Redox Molecular Grafting for Energy Storage Applications

15. Optimization of Electronic Transport at the Nanoscale through the Formation of Molecular Junctions within Composite Electrodes for Li-battery

16. Heterogeneous electrochemical behaviour of the lithium battery electrode LiFePO4

17. New concept and electrochemistry of in situ non-covalent immobilization of redox molecules for energy storage applications

18. New Concept to Boost Energy and Power Peformance of Practical Electrochemical Devices

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