A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode material for Li-ion batteries is investigated. Unlike other amorphous compounds so-far investigated as anode materials, it already contains Li as a base element in the uncycled state. The amorphous compound powder is prepared by high energy ball milling of a master alloy. It shows a strongly enhanced specific capacity in contrast to amorphous alloys without Li in the initial state. Therewith, by enabling a reversible (de)lithiation of metallic electrodes without the phase transition caused volume changes it offers the possibility of much increased specific capacities than conventional graphite anodes. According to the charge rate (C-rate), the sp...
Alloying anodes such as silicon are of great interest for lithium-ion batteries due to their high li...
With climate change upon us, the development of energy storage technologies to increase the integrat...
Abstract Developing advanced electrode materials is crucial for improving the electrochemical perfor...
A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode mate...
Crystalline phase transitions cause volume changes, which entails a fast destroying of the electrode...
Crystalline phase transitions cause volume changes, which entails a fast destroying of the electrode...
Crystalline phase transitions cause volume changes, which entails a fast destroying of the electrode...
We have investigated the use of aluminum based amorphous metallic glass as the anode in lithium ion ...
Al based alloy powders (Al₈₅Ni₅Y₆Co₂Fe₂) are produced by spray atomization method. High energy ball ...
Hochleistungsfähige Lithium-Ionen-Batterien sind insbesondere von der hohen spezifischen Kapazität i...
Hochleistungsfähige Lithium-Ionen-Batterien sind insbesondere von der hohen spezifischen Kapazität i...
A new synthesis route has been applied to obtain Li1+xV3O8. Instead of the conventional high-tempera...
A novel amorphous phosphorus chalcogenide (a-P4SSe2) compound as anode material delivers excellent e...
In this study, we analyze and compare the physical and electrochemical properties of an all solid-st...
The serious safety issues caused by uncontrollable lithium (Li) dendrite growth, especially at high ...
Alloying anodes such as silicon are of great interest for lithium-ion batteries due to their high li...
With climate change upon us, the development of energy storage technologies to increase the integrat...
Abstract Developing advanced electrode materials is crucial for improving the electrochemical perfor...
A new amorphous compound with the initial atomic composition Al43Li43Y6Ni8 applied as electrode mate...
Crystalline phase transitions cause volume changes, which entails a fast destroying of the electrode...
Crystalline phase transitions cause volume changes, which entails a fast destroying of the electrode...
Crystalline phase transitions cause volume changes, which entails a fast destroying of the electrode...
We have investigated the use of aluminum based amorphous metallic glass as the anode in lithium ion ...
Al based alloy powders (Al₈₅Ni₅Y₆Co₂Fe₂) are produced by spray atomization method. High energy ball ...
Hochleistungsfähige Lithium-Ionen-Batterien sind insbesondere von der hohen spezifischen Kapazität i...
Hochleistungsfähige Lithium-Ionen-Batterien sind insbesondere von der hohen spezifischen Kapazität i...
A new synthesis route has been applied to obtain Li1+xV3O8. Instead of the conventional high-tempera...
A novel amorphous phosphorus chalcogenide (a-P4SSe2) compound as anode material delivers excellent e...
In this study, we analyze and compare the physical and electrochemical properties of an all solid-st...
The serious safety issues caused by uncontrollable lithium (Li) dendrite growth, especially at high ...
Alloying anodes such as silicon are of great interest for lithium-ion batteries due to their high li...
With climate change upon us, the development of energy storage technologies to increase the integrat...
Abstract Developing advanced electrode materials is crucial for improving the electrochemical perfor...