This work presents the recent progress in nanostructured materials used as positive electrodes in Li-ion batteries (LIBs). Three classes of host lattices for lithium insertion are considered: transition-metal oxides V2O5, α-NaV2O5, α-MnO2, olivine-like LiFePO4, and layered compounds LiNi0.55Co0.45O2, LiNi1/3Mn1/3Co1/3O2 and Li2MnO3. First, a brief description of the preparation methods shows the advantage of a green process, i.e., environmentally friendliness wet chemistry, in which the synthesis route using single and mixed chelators is used. The impact of nanostructure and nano-morphology of cathode material on their electrochemical performance is investigated to determine the synthesis conditions to obtain the best electrochemical perfor...
After an introduction to lithium insertion compounds and the principles of Li-ion cells, we present...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
The development of advanced lithium-ion batteries is key to the success of many technologies, and in...
The Li-ion battery has for several years been at the forefront of powering an ever-increasing number...
With the growing market of electric vehicle (EV) in recent years, breakthroughs on components of the...
With the growing market of electric vehicle (EV) in recent years, breakthroughs on components of the...
Reversible nanostructured electrode materials are at the center of research relating to rechargeable...
The objective of this thesis work is to switch from standard to renewed configuration lithium ion ba...
Lithium-ion batteries (LIBs) are rechargeable batteries that use lithium ions for the storage and re...
The increasing role of technology in our lives necessitates the development of advanced energy stora...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
International audienceAfter an introduction to lithium insertion compounds and the principles of Li-...
The introduction of the first commercially produced Li-ion battery by Sony in 1990 sparked a period ...
AbstractThis review highlights the recent research advances in active nanostructured anode materials...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
After an introduction to lithium insertion compounds and the principles of Li-ion cells, we present...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
The development of advanced lithium-ion batteries is key to the success of many technologies, and in...
The Li-ion battery has for several years been at the forefront of powering an ever-increasing number...
With the growing market of electric vehicle (EV) in recent years, breakthroughs on components of the...
With the growing market of electric vehicle (EV) in recent years, breakthroughs on components of the...
Reversible nanostructured electrode materials are at the center of research relating to rechargeable...
The objective of this thesis work is to switch from standard to renewed configuration lithium ion ba...
Lithium-ion batteries (LIBs) are rechargeable batteries that use lithium ions for the storage and re...
The increasing role of technology in our lives necessitates the development of advanced energy stora...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
International audienceAfter an introduction to lithium insertion compounds and the principles of Li-...
The introduction of the first commercially produced Li-ion battery by Sony in 1990 sparked a period ...
AbstractThis review highlights the recent research advances in active nanostructured anode materials...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
After an introduction to lithium insertion compounds and the principles of Li-ion cells, we present...
Developing high-energy-density electrodes for lithium ion batteries (LIBs) is of primary importance ...
The development of advanced lithium-ion batteries is key to the success of many technologies, and in...