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Graphene Oxide Powder 99%min

Short Description:

Graphene oxide has a large number of oxygen-containing groups on its surface. It has good solvent solubility and affinity with polymers. Oxygen content of oxygen group is 30-40%, water solubility is very good, and the content of monolayer after dissolution is more than 99%. The size and thickness of the microchip ranged from 0.5 to 3 um and from 0.55 to 1.2 nm. No precipitation.


Product Detail

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Product Description

Graphene oxide has a large number of oxygen-containing groups on its surface. It has good solvent solubility and affinity with polymers. Oxygen content of oxygen group is 30-40%, water solubility is very good, and the content of monolayer after dissolution is more than 99%. The size and thickness of the microchip ranged from 0.5 to 3 um and from 0.55 to 1.2 nm. No precipitation.

Graphene oxide powder is obtained by vacuum freeze-drying of graphene oxide sol. During freeze-drying, graphene oxide will not lose oxygen-containing groups on the surface and cause overlap between graphene oxide layers. The powder after drying is porous and spongy. It dissolves quickly and completely after adding water, and almost immediately restores the original sol properties.

The graphene oxide powder can be dispersed directly in aqueous solution and solvent (ultrasound is better) to obtain uniform and stable dispersion solution (see dispersion guide for specific dispersion method).

Specification

Product Number TC-1 TC-02 TC-03 TC-04
Form Powder Slurry Dispersions Solvent type slurry
Colour Brownish yellow Brownish yellow Brownish yellow Brownish yellow
Thickness (nm) ~1 ~1 ~1 ~1
Single Layer Diameter (μm) 0.2~10 0.2~10 0.2~10 0.2~10
Peelable Rate (%) >95 >95 >95 >95
Carbon Content (wt.%) ~46 ~46 ~46 ~46
Oxygen Content (wt.%) ~50 ~50 ~50 ~50
Sulfur Content (wt.%) <1.5 <1.5 <1.5 <1.5
Ash Content (wt.%) <1.0 <1.0 <1.0 <1.0
Tap Density (g/L) ~270
Granularity (mesh) <80
Concentration (mg/ml) 10~20 0.5~5 10~20
 

Application

Graphene electronic devices (field effect transistors, optical devices, quantum effect devices, etc.);
  Touch screen (replaces silicon to produce electronic products, space elevator cables);
  Graphene composite materials (polymer composite materials, ceramic composite materials, etc.);
  Graphene energy storage devices (supercapacitors, etc.);
  Graphene conductive additives (lithium ion batteries, etc.);
  Graphene as an additive in lubricants;
  Graphene as a conductive additive in anticorrosive coatings;
  Application of graphene as an additive in cement;
  Application of graphene as an additive in drilling mud;
  Graphene as an additive in oil-water separator.

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