LITHIATED TRANSITION METAL OXIDES
Process for the fabrication of an electrode structure comprising an electrochemically active material suitable for use in an energy storage device. The method includes electrodepositing the electrochemically active material onto an electrode in electrodeposition bath containing a non-aqueous electrolyte. The electrode structure can be used for various applications such as electrochemical energy storage devices including high power and high-energy lithium-ion batteries.
1 .- 24 . (canceled)
25 . A composite structure comprising a conformal coating of a lithiated transition metal oxide on a carbon scaffold.
26 . The composite structure of claim 25 wherein the composite structure has an open pore porous structure.
27 . The composite structure of claim 25 wherein the composite structure has a void volume fraction (porosity) of at least about 95%.
28 . The composite structure of claim 25 wherein the composite structure is an open cell porous structure comprising unit cells having an average size in the range of about 10 nm to about 100 μm.
29 . A primary or secondary battery comprising a composite structure, the composite structure comprising a conformal coating of a lithiated transition metal oxide on a carbon scaffold.
30 . The primary or secondary battery of claim 29 wherein the composite structure comprises a conformal coating of a lithiated transition metal oxide on a structure comprising a metal current collector and a carbon scaffold.