Graphene materials with controlled morphology
Novel non-planar non-contiguous graphene structures and novel methods for forming the same. According to some embodiments the novel methods result in three-dimensional graphene structures. According to a further embodiment these three-dimensional graphene structures have a specific, controlled morphology. According to a still further method the novel method results in decoratable graphene sheets or three-dimensional graphene structures.
1. A three-dimensional (3D) graphene structure comprising a plurality of graphene walls surrounding a plurality of voids, wherein the voids are created by the removal of a sacrificial template material and wherein the voids result in a bi-modal pore distribution.
2. The 3D graphene structure of claim 1 wherein the graphene walls consist of a single graphene sheet.
3. The 3D graphene structure of claim 1 wherein the graphene walls consist of between 1 and 5 layers of graphene sheets.
4. The 3D graphene structure of claim 1 wherein the graphene walls consist of between 1 and 10 layers of graphene sheets.
5. The 3D graphene structure of claim 1 wherein a silicon particle is housed within at least one of the voids, wherein the diameter of the silicon particle, when fully expanded, is less than the diameter of the void.
6. The 3D graphene structure of claim 1 further comprising a plurality of surface defects.
7. The 3D graphene structure of claim 6 further comprising a catalytic material attached to the structure via the surface defects.
8. The 3D graphene structure of claim 1 wherein the graphene walls have a thickness of less than 20 graphene monolayers.
9. The 3D graphene structure of claim 1 wherein the graphene walls have a thickness of between 6 and 10 graphene monolayers.
10. The 3D graphene structure of claim 1 wherein the voids are irregular and non-uniform in shape.
11. A three-dimensional (3D) graphene structure consisting of a plurality of graphene walls surrounding a plurality of voids, wherein the voids are created by the removal of a sacrificial template material and wherein the voids result in a bi-modal pore distribution.
12. The 3D graphene structure of claim 11 wherein the graphene walls consist of a single graphene sheet.
13. The 3D graphene structure of claim 11 wherein the graphene walls consist of between 1 and 5 layers of graphene sheets.
14. The 3D graphene structure of claim 11 wherein the graphene walls consist of between 1 and 20 layers of graphene sheets.
15. The 3D graphene structure of claim 11 wherein the voids are irregular and non-uniform in shape.