The Naming Method of Graphene

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Graphene Graphene consists primarily of carbon atoms that are tightly packed within a honeycomb-like structure. Graphene exhibits excellent optical, mechanical, and electrical properties. This material has great potential for applications in materials science, micronano processing and energy as well as drug delivery and biomedicine. It’s a promising material for the future.
To regulate the growth of the graphene industry, it is important to have a better grasp of what graphene means. China Graphene Standards Committee reviewed the single-layer and double-layer graphenes, few-layer analogs, single-layer graphene oxides, single-layer graphene and single layer graphene. There are many concepts like reduced graphene dioxide, functionalized graphene and graphene material.

The material’s electronic energy band structure is now at its limit of three dimensions when there are 10 graphene layer. This means that the graphene standard defines graphene as being within 10 layers. A single-layer graphene can be described as a carbon material with two dimensions. It is made up of an individual layer of carbon molecules that are arranged closely within a hexagonal honeycomb structure.

A double-layer graphene is composed of two layers of carbon atoms. They are packed together in a benzene ring structure, which is a hexagonal honeycomb shape. There are many stacking options, including AB stacking or AA stacking. Dimensional carbon materials.

This two-dimensional grapheneis composed of 3-10 layers carbon atoms. They are packed together in a benzene ring structure, (hexagonal honeycomb) using different stacking methods, including ABC stacking (ABA stacking), etc. Material.

Single layer grapheneoxide describes a two-dimensional carbon-material with oxygen-containing functional chains attached to the boundary and surface of single-layer graphene. Graphene oxide is a two-dimensional carbon substance with oxygen-containing functional links attached to the surface or boundary of at most one carbon atom layer. Grapheneoxide also includes single-layer grapheneoxid.

A single-layer, reduced grapheneoxide is a 2-dimensional carbon material that has been deoxidized and reduced from graphene oxide. This can be done by removing all oxygen-containing functional groups by heating, electrochemical or chemical treatment.

A two-dimensional carbon material called reduced graphene is made by heat treating graphene oxide with chemical or electrochemical methods. One-layer reduced graphene, as well as the previously mentioned single-layer reduction graphene dioxide are all examples of reduced graphene.

Functionalized graphene is a kind of graphene that contains heteroatoms/molecules (such as hydrogen, fluorine, oxygen-containing groups and other surface modification to form bonds, nitrogen, boron and other elements substitution doping, heteroatom/molecule intercalation) Etc.) Two-dimensional carbon material. Functionalized graphene can be either the graphene or reduced graphene oxide described above.

This definition includes graphene of single, double, or few layers. Each can be called graphene material.

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