Exact(6)
In recent years, there have been successful studies into the development of cathode materials for LIBs and NIBs [9, 10].
The development of cathode materials is needed to compose battery systems.
Along with the development of cathode materials for LIBs, lithium storage properties of hexagonal layer structured LiCoO2 (theoretical specific capacity 274 mAh/g) has been thoroughly studied.
Li-rich layered oxides are of great potential to promote the development of cathode materials for Li-ion batteries.
However, the development of cathode materials for zinc-ion batteries to date has been mainly limited to tunnel manganese oxides and Prussian blue analogues.
For these reasons, the development of cathode materials exhibiting reversible, more-than-one electron reactions would constitute one of the major breakthroughs for the realization of the next generation of accumulators, some other requirements being high voltage reactions and flat reaction plateaus.
Similar(54)
Previous studies have showed that there are two categories of cathode materials [1].
The importance of cathode materials in LIBs are tremendous since the LIBs are still cathode limited in design.
Among different kinds of cathode materials for lithium battery, LiMn2O4 is considered to be an attractive cathode material because of its low cost, abundant resources, low toxicity, and better safety, compared to other transition metal oxides [8, 9].
Therefore, the modifications of cathode materials and electrolytes are the key factors to improve the cycling stability of LNMO.
Development of the cathode materials for lithium ion battery is vital to meet the demands of portable devices, power tools, e-bikes, future usages of electric vehicles, and so on [1].
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