Two-dimensional amorphous carbon coating and methods of growing and differentiating stem cells
Described is a composite material composed of an atomically thin (single layer) amorphous carbon disposed on top of a substrate (metal, glass, oxides) and methods of growing and differentiating stem cells.
1. A two-dimensional amorphous carbon (2DAC) coating having an atomic structure consisting of non-hexagonal carbon rings and hexagonal carbon rings,
wherein the 2D amorphous carbon coating has a crystallinity (C)<1 and a sp 3 /sp 2 bond ratio is 0.2 or less,
wherein C (crystallinity)=number of hexagons:(number of hexagons+number of non-hexagons), and
wherein the coating is an implant coating.
2. The coating of claim 1 , wherein the 2D amorphous carbon coating has a crystallinity (C)≤0.8.
3. The coating of claim 1 , wherein the 2D amorphous carbon coating has a resistivity of 0.01 to 1000 Ω-cm, inclusive.
4. The coating of claim 1 , wherein the implant coating forms a contact angle of about 60° with a surface of an implant.
5. The coating of claim 1 , wherein the implant coating adheres to an implant with an adhesion energy of about 200 J/m 2 or greater.
6. The coating of claim 1 , wherein the non-hexagonal carbon rings are in the form of one selected from the group consisting of: 4-membered carbon rings, 5-membered carbon rings, 7-membered carbon rings, 8-membered carbon rings and 9-membered carbon rings.
7. The coating of claim 1 , comprising:
an optical transparency equal to or greater than 98% at a wavelength of 550 nm or higher.