| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATControl of the redox potential of lithium terephthalate Li2TP anode material is demonstrated by functionalizing its terephthalate backbone with an electron-donating amino group; this lowers - as intended - the redox potential of Li2TP by 0.14 V. The two Li-organic electrode materials, Li2TP and Li2TP-NH2, are fabricated as crystalline thin films from gaseous precursors using the atomic/molecular layer deposition (ALD/MLD) technique. The amino-functionalized material possesses a previously unknown crystal structure, addressed here by applying the USPEX evolutionary algorithm for the structure prediction and then LeBail fitting of the experimental XRD pattern based on the predicted structure model....
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATWe present novel atomic/molecular layer deposition (ALD...
We demonstrate the fabrication of high-quality electrochemically active organic lithium electrode th...
We demonstrate the fabrication of high-quality electrochemically active organic lithium electrode th...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATIntercalated metal-organic framework (iMOF) type electr...
The performance and safety of lithium-ion batteries (LIBs) are dependent on interfacial processes at...
We demonstrate an atomic layer deposition (ALD) process for the solid electrolyte lithium phosphorou...
Organic electroactive materials are promising candidates to be used as lithium insertion electrodes ...
International audienceThe substituent effect on the redox potential of lithium terephthalate was stu...
International audienceOrganic electrode materials offer obvious opportunities to promote cost-effect...
International audienceLi-ion batteries (LIBs) appear nowadays as flagship technology able to power a...
This dissertation describes the development of thin film electrodes with well-defined structures and...
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATWe present novel atomic/molecular layer deposition (ALD...
We demonstrate the fabrication of high-quality electrochemically active organic lithium electrode th...
We demonstrate the fabrication of high-quality electrochemically active organic lithium electrode th...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATIntercalated metal-organic framework (iMOF) type electr...
The performance and safety of lithium-ion batteries (LIBs) are dependent on interfacial processes at...
We demonstrate an atomic layer deposition (ALD) process for the solid electrolyte lithium phosphorou...
Organic electroactive materials are promising candidates to be used as lithium insertion electrodes ...
International audienceThe substituent effect on the redox potential of lithium terephthalate was stu...
International audienceOrganic electrode materials offer obvious opportunities to promote cost-effect...
International audienceLi-ion batteries (LIBs) appear nowadays as flagship technology able to power a...
This dissertation describes the development of thin film electrodes with well-defined structures and...
Rechargeable batteries based on organic electrode materials are an attractive energy storage alterna...
International audienceThe preparation and assessment versus lithium of a functionalized terephthalat...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATWe present novel atomic/molecular layer deposition (ALD...