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Kaskhedikar, N. A. & Maier, J. Lithium Storage ion Carbon Nanostructures.
Ma, H. et al. Nest-like silicon nanospheres for high-capacity lithium storage.
Zhong, D. Y. et al. Lithium storage in polymerized carbon nitride nanobells.
Lu, X. et al. Lithium Storage in Li4Ti5O12 Spinel: The Full Static Picture from Electron Microscopy.
Huang, C. et al. Graphdiyne for high capacity and long-life lithium storage.
Sun, C. & Searles, D. J. Lithium storage on graphdiyne predicted by DFT calculations.
Wu, J. et al. Pushing up lithium storage through nanostructured polyazaacene analogues as anode.
Figure 5: Electrochemical properties of the CoMn2O4 hierarchical microspheres for lithium storage.
In consequence, the SnOx@C exhibits outstanding lithium storage.
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The constructing MoS2/N-graphene architecture demonstrates the improved electrochemical performances for reversible lithium storage.
So the Ag-deposited 3D porous Si anode exhibits significantly improved lithium-storage performance.
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