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Cobalt-doped todorokites were investigated as cathode materials of lithium rechargeable batteries for charge/discharge characteristics.
Their electrochemical properties as potential anode materials of lithium ion batteries are also investigated.
The obtained ZnCo2O4 nanorods show a great prospect for application in the anode materials of lithium ion batteries.
The incorporation of additives designed to sacrificially react on the surface of cathode materials of lithium ion batteries has been investigated.
As anode materials of lithium- and sodium-ion batteries (LIBs and SIBs), the C-ZnO structured composites exhibit excellent electrochemical performances.
In this study, we present an alternative pathway for the surface modification of anode materials of lithium ion batteries via molecular design.
Similar(48)
Transition metal oxides have attracted considerable attention as anode materials of lithium-ion batteries (LIBs).
Carbonaceous materials have been widely investigated as negative electrode materials of lithium-ion batteries (LIBs).
This work would open a new doorway for designing the electrode materials of lithium-ion batteries with superior performance.
In this paper, we report on the preparation of Si Y multi-layer thin films by magnetron sputtering and their application as anode materials of lithium-ion batteries.
Nitrided lithium titanate N-Li4Ti5O122) nanoarrays with nanowire and nanotube structures were designed as the electrode materials of lithium-ion supercapacitor for electrochemical energy storage.
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