Advanced Si-C composite anode electrode for high energy density and longer cycle life
An electrode has a first set of stripes of a graphite-containing material, and a second set of stripes of silicon-containing material interdigitated with the first set of stripes. A method of manufacturing an electrode includes extruding first and second materials simultaneously onto a substrate in interdigitated stripes, wherein the first material comprises a graphite-containing material and the second material comprises a silicon-containing material.
1. An electrode, comprising:
a layer of alternating stripes of two different materials, wherein a first material is a graphite-containing material and a second material is a silicon-containing material, wherein the silicon-containing material resides in a three-dimensional graphite matrix.
2. The electrode of claim 1 , further comprising an oxide coating on particles of the graphite-containing material and an oxide coating on particles of the silicon-containing material.
3. The electrode of claim 1 , wherein the graphite-containing material comprises particles of graphite in a paste.
4. The electrode of claim 1 , wherein the silicon-containing material comprises particles of silicon in a paste.
5. The electrode of claim 1 , wherein the silicon-containing material has a weight percent of up to 50 weight percent.
6. The electrode of claim 1 , further comprising a current collector, wherein the graphite-containing material forms a coating covering the entire current collector upon which the layer of alternating stripes of two materials reside.
7. An electrode, comprising:
a first set of stripes of a graphite-containing material; and
a second set of stripes of silicon-containing material interdigitated with the first set of stripes, the silicon material residing in a three-dimensional graphite matrix, wherein the graphite-containing material forms a coating covering the entire current collector upon which the first and second set of stripes reside.