My research activities are supported by national and international collaborative projects involving academic institutions, research organizations, and industrial partners.

These projects address challenges ranging from the development of advanced electrode materials to the implementation of sustainable battery recycling technologies.

Research Projects and Scientific Leadership

NANO-INSPIRE | ANR JCJC | 2021–2025

Role: Principal Investigator

NANO-INSPIRE investigated innovative approaches to control the nanostructure, particle morphology, and surface chemistry of positive electrode materials for sodium-ion batteries.

The project aimed to establish relationships between material design, synthesis conditions, and electrochemical performance, with particular emphasis on improving charge transport and cycling stability.

MASCAT | ANR | 2025–2029

Role: Work Package Leader – Electrode Material Recycling

Within MASCAT, I lead the research activities dedicated to electrode material recycling, contributing my expertise in materials chemistry, characterization, and electrochemical energy storage.

CESAR | French–German ANR Project | 2026–2029

Role: Work Package Leader – Electrochemical Characterization

My contribution focuses on the electrochemical characterization of all-solid-state battery cells, supporting the evaluation of their performance and electrochemical behavior.

Collaborative Research Projects

REGENERATE | ANR | 2022–2026

Investigation of regenerated layered oxide electrode materials from lithium-ion batteries, with a focus on understanding the relationships between recycling conditions, material properties, and electrochemical performance.

NAIMA | European H2020 Project

Development of advanced positive electrode materials for sodium-ion batteries, using a solid-state chemistry approach to improve energy density and electrochemical performance.

H-BAT | ANR | 2022–2026

Exploration of high-potential positive electrode materials for proton-based batteries, including their electrochemical behavior and stability in protic ionic liquid electrolytes.

International Doctoral and Research Networks

I am also involved in international doctoral training and collaborative research programs, including:

  • DESTINY and DESTINY 2: Marie Skłodowska-Curie COFUND doctoral programs.

  • AUFRANDE: Australia–France doctoral research network.

  • ALISTORE-ERI: European research and doctoral collaboration on electrochemical energy storage.

  • LAFIMACS / PRISME: Franco-Indian international research collaborations in solid-state chemistry and energy materials.

These programs contribute to international scientific exchanges, interdisciplinary research, and the training of early-career researchers.

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