High-entropy oxides based on transition metals, such as Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O (TM-HEO), have recently drawn special attention as potential anodes in lithium-ion batteries due to high specific capacity and cycling reversibility. However, the lithiation/delithiation mechanism of such systems is still controversial and not clearly addressed. Here, we report on an operando XAS investigation into TM-HEO-based anodes for lithium-ion cells during the first lithiation/delithiation cycle. This material showed a high specific capacity exceeding 600 mAh g-1 at 0.1 C and Coulombic efficiency very close to unity. The combination of functional and advanced spectroscopic studies revealed complex charging mechanisms, developing through the reduction o...
The detailed mechanistic understanding of the electrochemical reactions occurring in lithium-ion bat...
Owing to their robust Li-ion storage properties induced by the entropy stabilization effect, transit...
International audienceThe energy density delivered by a Li-ion battery is a key parameter that needs...
High-entropy oxides based on transition metals, such as Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O (TM-HEO), have re...
Transition metal-based high entropy oxides (TM-HEO) have recently been gaining interest for their po...
Two different high-entropy oxide materials were synthesized and studied as Li-ion battery anodes. Th...
The limited capacity of the positive electrode active material in non-aqueous rechargeable lithium-b...
Metal-based high entropy oxides are considered promising electrode materials for use in Li- ion batt...
In recent years, the concept of entropy stabilization of crystal structures in oxide systems has led...
To satisfy the increasing need for efficient energy storage systems resulting from the worldwide rap...
With the increasing fossil energy consumptions and environmental concerns, new sustainable energy so...
Li-rich oxide cathodes are drawing increasing attention as next-generation cathode materials for the...
Anionic redox revealed reversibility in Li-rich layered oxides Li2MO3, which was strongly dependent ...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...
High-entropy oxide (HEO) is an emerging type of anode material for lithium-ion batteries with excell...
The detailed mechanistic understanding of the electrochemical reactions occurring in lithium-ion bat...
Owing to their robust Li-ion storage properties induced by the entropy stabilization effect, transit...
International audienceThe energy density delivered by a Li-ion battery is a key parameter that needs...
High-entropy oxides based on transition metals, such as Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O (TM-HEO), have re...
Transition metal-based high entropy oxides (TM-HEO) have recently been gaining interest for their po...
Two different high-entropy oxide materials were synthesized and studied as Li-ion battery anodes. Th...
The limited capacity of the positive electrode active material in non-aqueous rechargeable lithium-b...
Metal-based high entropy oxides are considered promising electrode materials for use in Li- ion batt...
In recent years, the concept of entropy stabilization of crystal structures in oxide systems has led...
To satisfy the increasing need for efficient energy storage systems resulting from the worldwide rap...
With the increasing fossil energy consumptions and environmental concerns, new sustainable energy so...
Li-rich oxide cathodes are drawing increasing attention as next-generation cathode materials for the...
Anionic redox revealed reversibility in Li-rich layered oxides Li2MO3, which was strongly dependent ...
With the increasing demand for renewable energy sources such as solar, geothermal, and wind energy, ...
High-entropy oxide (HEO) is an emerging type of anode material for lithium-ion batteries with excell...
The detailed mechanistic understanding of the electrochemical reactions occurring in lithium-ion bat...
Owing to their robust Li-ion storage properties induced by the entropy stabilization effect, transit...
International audienceThe energy density delivered by a Li-ion battery is a key parameter that needs...