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The Physico-Chemistry of Materials and Electrolytes for Energy laboratory (PCM2E) was created in 2012 and works in the field of energy conversion and storage (batteries, supercapacitors, hybrid photovoltaics, ionic liquids), on nanostructured materials and organic electrochromic devices.

The overall project of the laboratory is built around skills in electrochemistry, thermodynamics and materials chemistry. The laboratory has three priority themes which are:

- Axis 1: Electrolytes, membranes and electrode materials for energy storage

- Axis 2: Organic semiconductors and nanostructured materials

- Axis 3: Ionic Liquids

 

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Keywords

Group contribution model Nanoparticles Thermal conductivity Electrolytes Negative electrode Transport properties Deep eutectic solvents Ionic Liquids 2D ionic transport Lithium salt Water Heat transfer fluids Ionic Liquid Temperature Volumetric properties Viscosity Polypyrrole LiS batteries Supercapacitors Copolymerization Nanocomposites Acetonitrile Li-ion batteries Thin films Manganese Electrochemical storage Protic ionic liquids Catholyte N-methylacetamide Rubber Conducting polymers Activated carbon Lithium Binary mixtures Propylene carbonate Speed of sound Na-ion batteries Adsorption isotherms Conductimetry Capacitance Tensiometry Batteries Electrolyte additives Electrochemical performances 3-propane sultone Adiponitrile Lithium ion batteries High potential spinel Gamma butyrolactone Cathode High voltage Electrochemical polymerization Protic ionic liquid Physical properties Modeling Electrolyte SEI additives Li-ion battery Electrolyte/electrode interface Statistical physics Ionic liquids Alkylcarbonates 1-butyl-1-methylpyrrolidinium bistrifluoromethylsulfonylimide Bistrifluoromethylsulfonylimide LiTFSI 2-apyrimidines Supercapacitor Cryoetching Electrodes Battery Deep eutectic solvent Manganese oxide Morphology Energy storage systems Thermophysical properties 3-benzodioxoles Cyclic voltammetry Perovskite solar cells Electrochemistry Lithium-ion batteries Electrochemical capacitors 4-Dimethylthiophene Cathodes Density functional theory SEI Lithium compounds Heat capacity MnO2 Carbazole Electrochemical impedance spectroscopy Carbon nanotubes Graphite Isobaric heat capacity Micellar parameters Hole transporting material Dynamic light scattering Chemical activation Ionic liquid CO2 capture

 

 

 

 

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