International audienceThe preparation and assessment versus lithium of a functionalized terephthalate-based as a potential new negative electrode material for Li-ion battery is presented. Inspired from molecular modelling, a decrease in redox potential is achieved through the symmetrical adjunction of electron-donating fragments (–CH3) on the aromatic ring. While the electrochemical activity of this organic material was maximized when used as nanocomposite and without any binder, the potential is furthermore lowered by 110 mV upon functionalization, consistently with predicted value gained from DFT calculations
Terephthalate-substituted thiophene derivatives are promising redox-active components for anode mate...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
Present Li-ion batteries for portable electronics are based on inorganic electrodes. For upcoming la...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
International audienceThe substituent effect on the redox potential of lithium terephthalate was stu...
© The Royal Society of Chemistry 2019. Rechargeable batteries based on organic electrode materials a...
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
To promote low emission electrochemical energy storage systems, a possible alternative consists in p...
International audienceMeeting the ever-growing demand for electrical storage devices requires both s...
International audienceLi-ion batteries (LIBs) appear nowadays as flagship technology able to power a...
Organic electrode materials, as sustainable and environmental benign alternatives to inorganic elect...
Terephthalate-substituted thiophene derivatives are promising redox-active components for anode mate...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
Present Li-ion batteries for portable electronics are based on inorganic electrodes. For upcoming la...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
International audienceThe substituent effect on the redox potential of lithium terephthalate was stu...
© The Royal Society of Chemistry 2019. Rechargeable batteries based on organic electrode materials a...
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
To promote low emission electrochemical energy storage systems, a possible alternative consists in p...
International audienceMeeting the ever-growing demand for electrical storage devices requires both s...
International audienceLi-ion batteries (LIBs) appear nowadays as flagship technology able to power a...
Organic electrode materials, as sustainable and environmental benign alternatives to inorganic elect...
Terephthalate-substituted thiophene derivatives are promising redox-active components for anode mate...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
Present Li-ion batteries for portable electronics are based on inorganic electrodes. For upcoming la...