International audienceThis paper proposes a molecular grafting approach as a way to modify the interfacial chemical reactivity of oxide materials, which is detrimental to their long-term energy storage properties. The present study demonstrates that diazonium chemistry offers an efficient path to graft molecules at the surface of a powder oxide material. Indeed, surface derivatization of Li1.1V3O8 nanograins was accomplished by in situ electrografting of a diazonium salt during Li-ion intercalation. The results show that aryl molecules are strongly bonded to the surface forming an organic multilayer the thickness of which can be modulated. Based on TEM, XPS and electrochemical probing of the surface reactivity, the results demonstrate the i...
Ni-rich layered oxides are considered the most promising candidates for cathode materials for use in...
Since the first generation of lithium-ion batteries featured lithium cobalt oxide cathode and carbon...
The poor compatibility of the electrodes-electrolyte interfaces of rechargeable lithium metal batter...
International audienceRecent developments at IMN will be shared on several research directions out o...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
The functionalization of electrode surfaces is a useful approach to gain a better understanding of s...
International audienceAqueous batteries are regaining interest, thanks to the extended working stabi...
The instability and Li2CO3 contaminants of garnet-type electrolytes exposed to air could lead to in ...
International audienceDespite great interests in electrochemical energy storage systems for numerous...
Lithium transition metal oxides are Li host structures used as cathodes for Li-ion batteries. Li is ...
Li-ion batteries have started to reach the theoretical maximum energy. Next-generation batteries rep...
Electrografting of diazonium salts containing a protected alkyne moiety was used for the first funct...
The lithium (Li) metal anode suffers severe interfacial instability from its high reactivity toward ...
International audienceThe lithium-ion battery technology is rooted in the studies of intercalation o...
Ni-rich layered oxides are considered the most promising candidates for cathode materials for use in...
Since the first generation of lithium-ion batteries featured lithium cobalt oxide cathode and carbon...
The poor compatibility of the electrodes-electrolyte interfaces of rechargeable lithium metal batter...
International audienceRecent developments at IMN will be shared on several research directions out o...
Motivated by new applications including electric vehicles and the smart grid, interest in advanced l...
The functionalization of electrode surfaces is a useful approach to gain a better understanding of s...
International audienceAqueous batteries are regaining interest, thanks to the extended working stabi...
The instability and Li2CO3 contaminants of garnet-type electrolytes exposed to air could lead to in ...
International audienceDespite great interests in electrochemical energy storage systems for numerous...
Lithium transition metal oxides are Li host structures used as cathodes for Li-ion batteries. Li is ...
Li-ion batteries have started to reach the theoretical maximum energy. Next-generation batteries rep...
Electrografting of diazonium salts containing a protected alkyne moiety was used for the first funct...
The lithium (Li) metal anode suffers severe interfacial instability from its high reactivity toward ...
International audienceThe lithium-ion battery technology is rooted in the studies of intercalation o...
Ni-rich layered oxides are considered the most promising candidates for cathode materials for use in...
Since the first generation of lithium-ion batteries featured lithium cobalt oxide cathode and carbon...
The poor compatibility of the electrodes-electrolyte interfaces of rechargeable lithium metal batter...