Sandwich-type graphene composite structure for anode material of lithium ion secondary battery and manufacturing method thereof
A sandwich-type graphene composite structure formed of carbon-coated silicon nanoparticles and graphene, and a method for manufacturing the same are provided. The sandwich-type graphene composite structure is formed of a carbon-coated silicon graphene through an environmentally friendly filtration process. The formed sandwich-type graphene composite structure relieves the volume expansion of the silicon. In addition, the carbon coated on the silicon surface improves electrical conductivity and may be used as a high-capacity anode material.
1. A graphene composite structure, comprising:
a first graphene oxide sheet layer;
a silicon nanoparticle layer disposed on the first graphene oxide sheet layer; and
a second graphene oxide sheet layer formed on the silicon nanoparticle layer,
wherein a surface of the silicon nanoparticle layer is coated with carbon, and nitrogen atoms remaining on the surface of the silicon nanoparticle layer and oxygen atoms on the first graphene oxide sheet layer and the second graphene oxide sheet layer are bonded by hydrogen bonds, the hydrogen bonds comprising N—H and O—H functional groups,
and wherein the graphene composite structure has a Si—C peak in an infrared spectroscopy graph, and the surface of the silicon nanoparticles forms a covalent bond with carbon.
2. The composite structure according to claim 1 , wherein an additional silicon nanoparticle layer and graphene oxide sheet layer are alternately stacked on the second graphene oxide sheet layer.
3. The composite structure according to claim 1 , wherein the first graphene oxide sheet layer and the second graphene oxide sheet layer are bonded with the silicon nanoparticle layer using the hydrogen bonds.