3nm Platelet Thickness Graphene Powder
3nm Platelet Thickness Graphene Powder
SKU:GRA-a1b893
Cutting-edge 3nm Platelet Thickness Graphene Powder for top-notch electronic and composite applications.
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$29.99
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$29.99
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Experience the cutting-edge technology with our 3nm Platelet Thickness Graphene Powder. This high-grade CamGraph® G3 powder offers exceptional purity (90.0%) and precise platelet thickness tolerances to meet stringent institutional procurement standards. Derived from the award-winning research on graphene, this nano-material boasts outstanding mechanical stiffness, electrical & thermal conductivity, making it ideal for advanced electronics, composites, and protective coatings.
Product Specifications
Material Material
GrapheneGraphene was first isolated in 2004 by Andre Geim and Konstantin Novoselov at Manchester University in the UK. They were later awarded the Nobel Prize for physics in 2010 for "ground-breaking experiments regarding the two-dimensional material graphene". Their initial experiments eventually lead to material 1 atom thick. Graphene is an allotrope of carbon, a flat mono-layer of carbon atoms tightly packed into a hexagonal 2D honeycomb lattice. Carbon 2 to 10 atom layers thick is usually classified as "few-layer graphene", and up to 100 layers thick it is generally called "graphene nanoplatelets". Beyond that is graphite. Graphene is the closest we can get to a 2D material; it has good mechanical stiffness, strength and elasticity, very high electrical and thermal conductivity, and it has good applications in electronics, protective coatings, composites and more.
Specifications Bulk Density
0.03 g·cm-3
Specifications Class
Nano-Materials
Specifications Form
Powder
Specifications Grade
CamGraph® G3
Specifications Platelet Layer Thickness
9 nm
Specifications Platelet Layer Thickness Tolerance
6 nm
Specifications Platelet Thickness
3 nm
Specifications Platelet Thickness Tolerance
2 nm
Specifications Purity
90.0 %
Specifications Weight
1 to 10 g
Type Type
MetalA metal is generally considered to be a pure element which readily forms cations. Metals are characterized by their opacity and high thermal and electrical conductivities, the latter properties resulting from the delocalized and mobile nature of the electrons over the crystal structure.