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





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