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Publications by Pierre-Louis Taberna
Effect of the Carbon Microporous Structure on the Capacitance of Aqueous Supercapacitors
Energy Storage Materials
Materials Science
Energy Engineering
Renewable Energy
Sustainability
Power Technology
the Environment
Capacitive Energy Storage From −50 to 100 °C Using an Ionic Liquid Electrolyte
Journal of Physical Chemistry Letters
Materials Science
Nanotechnology
Physical
Theoretical Chemistry
Nanoscience
Non-Aqueous Gel Polymer Electrolyte With Phosphoric Acid Ester and Its Application for Quasi Solid-State Supercapacitors
Journal of Power Sources
Electronic Engineering
Sustainability
Energy Engineering
Renewable Energy
Theoretical Chemistry
Electrical
Power Technology
the Environment
Physical
Understanding Ageing Mechanisms of Porous Carbons in Non-Aqueous Electrolytes for Supercapacitors Applications
Journal of Power Sources
Electronic Engineering
Sustainability
Energy Engineering
Renewable Energy
Theoretical Chemistry
Electrical
Power Technology
the Environment
Physical
Capacitance of Two-Dimensional Titanium Carbide (MXene) and MXene/carbon Nanotube Composites in Organic Electrolytes
Journal of Power Sources
Electronic Engineering
Sustainability
Energy Engineering
Renewable Energy
Theoretical Chemistry
Electrical
Power Technology
the Environment
Physical
Tracking Ionic Fluxes in Porous Carbon Electrodes From Aqueous Electrolyte Mixture at Various pH
Electrochemistry Communications
Electrochemistry
Wafer-Level Fabrication Process for Fully Encapsulated Micro-Supercapacitors With High Specific Energy
Microsystem Technologies
Electronic Engineering
Condensed Matter Physics
Nanoscience
Hardware
Optical
Electrical
Architecture
Magnetic Materials
Nanotechnology
Electronic
Improved Electro-Grafting of Nitropyrene Onto Onion-Like Carbon via in Situ Electrochemical Reduction and Polymerization: Tailoring Redox Energy Density of the Supercapacitor Positive Electrode
Improved Electro-Grafting of Nitropyrene Onto Onion-Like Carbon via in Situ Electrochemical Reduction and Polymerization: Tailoring Redox Energy Density of the Supercapacitor Positive Electrode