This study aims to explore the potential of (FeCoCrMnZn)3O4 high entropy oxide as an anode material for lithium ion batteries.
Prepared samples using solid state synthesis involving ball milling and annealing techniques.
Conducted ex-situ and operando investigations to analyze the material's performance and characteristics.
Demonstrated promising electrochemical properties as an anode material.
Highlighted the structural stability and capacity retention during lithium ion intercalation.
Abstract
FeCoCrMnZn) 3 O 4 high entropy oxide samples were prepared through solid state synthesis route involving two major steps viz., ball milling and annealing. One sample (HEO1) was prepared via...