We report an alginate, extracted from brown seaweed as a polymeric binder for spinel LiMn2O4. The exceptional Mn2+ capture of the alginate extracted from brown seaweed resolves the chronic issue of a promising lithium battery cathode, LiMn2O4, upholding the feasibility of its use for emerging large-scale applications including electric vehicles.
A new 3 volt lithium manganese oxide cathode, LiMn2O4.1, for lithium batteries has been prepared by ...
An environmentally benign, highly conductive, and mechanically strong binder system can overcome the...
Lithium-ion cells are currently the primary source of power for portable electronic devices such as ...
Polymer electrodes are vital components of lithium-ion batteries and have gained great interest in r...
Transition metal ion dissolution due to hydrofluoric acid attack is a long???standing issue in the M...
Binders are electrochemically inactive electrode components. However, their chemical and physical na...
International audienceEco-friendly and cheap lithium ion battery electrode processing using a seawee...
Advancements in energy storage technologies need to keep pace with the accelerating transition to re...
Lithium manganese oxide spinel (LiMn2O4), one of the popular cathode material for lithium ion batter...
DoctorWith increasing global demands for lithium resources, the separation of lithium from seawater-...
The continuous growth of the lithium battery market calls for strategies that simultaneously target ...
The electrochemical properties of LiMn2O4 and LiMyMn2-yO4 (M = Ti, Ge, Fe, Zn, or Ni) were studied f...
We present a sustainable, inherently safe battery chemistry that is based on widely available and ch...
The use of water-processable binders could lower production costs and grant easier and more environm...
A LiMn2O4 (LMO) containing three-dimensional composite cathode was prepared by impregnation of carbo...
A new 3 volt lithium manganese oxide cathode, LiMn2O4.1, for lithium batteries has been prepared by ...
An environmentally benign, highly conductive, and mechanically strong binder system can overcome the...
Lithium-ion cells are currently the primary source of power for portable electronic devices such as ...
Polymer electrodes are vital components of lithium-ion batteries and have gained great interest in r...
Transition metal ion dissolution due to hydrofluoric acid attack is a long???standing issue in the M...
Binders are electrochemically inactive electrode components. However, their chemical and physical na...
International audienceEco-friendly and cheap lithium ion battery electrode processing using a seawee...
Advancements in energy storage technologies need to keep pace with the accelerating transition to re...
Lithium manganese oxide spinel (LiMn2O4), one of the popular cathode material for lithium ion batter...
DoctorWith increasing global demands for lithium resources, the separation of lithium from seawater-...
The continuous growth of the lithium battery market calls for strategies that simultaneously target ...
The electrochemical properties of LiMn2O4 and LiMyMn2-yO4 (M = Ti, Ge, Fe, Zn, or Ni) were studied f...
We present a sustainable, inherently safe battery chemistry that is based on widely available and ch...
The use of water-processable binders could lower production costs and grant easier and more environm...
A LiMn2O4 (LMO) containing three-dimensional composite cathode was prepared by impregnation of carbo...
A new 3 volt lithium manganese oxide cathode, LiMn2O4.1, for lithium batteries has been prepared by ...
An environmentally benign, highly conductive, and mechanically strong binder system can overcome the...
Lithium-ion cells are currently the primary source of power for portable electronic devices such as ...