International audienceThe substituent effect on the redox potential of lithium terephthalate was studied using symmetrical dilithium disubstituted-terephthalates incorporating bromo, methoxy and amino groups. All the terephthalate derivatives have been synthesized and evaluated as anode material for lithium-ion batteries. The electrochemical results revealed an increase in the reduction potential in the case of bromo and methoxy groups and almost the same in the case of amino group compared to unmodified dilithium terephthalate. In addition, a very first tendency between the C-13 chemical shifts and FTIR signal of the carbonyl and the reduction potential of the studied disubstituted-terephthalates was formulated
Li-ion batteries (LIBs) appear nowadays as flagship technology able to power an increasing range of ...
The article considers the effect of the solvate environment of the lithium cation in various aprotic...
Disodium terephthalate and its various derivatives are synthesized via simple acid-base chemistry fo...
International audienceThe substituent effect on the redox potential of lithium terephthalate was stu...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
© The Royal Society of Chemistry 2019. Rechargeable batteries based on organic electrode materials a...
International audienceLi-ion batteries (LIBs) appear nowadays as flagship technology able to power a...
International audienceOrganic electrode materials offer obvious opportunities to promote cost-effect...
International audienceMeeting the ever-growing demand for electrical storage devices requires both s...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATControl of the redox potential of lithium terephthalate...
Li-ion batteries (LIBs) appear nowadays as flagship technology able to power an increasing range of ...
The article considers the effect of the solvate environment of the lithium cation in various aprotic...
Disodium terephthalate and its various derivatives are synthesized via simple acid-base chemistry fo...
International audienceThe substituent effect on the redox potential of lithium terephthalate was stu...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
© The Royal Society of Chemistry 2019. Rechargeable batteries based on organic electrode materials a...
International audienceLi-ion batteries (LIBs) appear nowadays as flagship technology able to power a...
International audienceOrganic electrode materials offer obvious opportunities to promote cost-effect...
International audienceMeeting the ever-growing demand for electrical storage devices requires both s...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATControl of the redox potential of lithium terephthalate...
Li-ion batteries (LIBs) appear nowadays as flagship technology able to power an increasing range of ...
The article considers the effect of the solvate environment of the lithium cation in various aprotic...
Disodium terephthalate and its various derivatives are synthesized via simple acid-base chemistry fo...