Graphene Oxide Aqueous Dispersion

₹1220.00

Graphene Oxide (GO) Aqueous Dispersion — Technical Specifications

Below is a professional TDS-style specification suitable for a catalogue, quotation, or customer datasheet. Exact values should be replaced with your actual COA/test results.

Parameter

Typical / Target Specification

Product Name

Graphene Oxide (GO) Aqueous Dispersion

Material Type

Two-dimensional oxidized graphene nanomaterial

Chemical Composition

Carbon, oxygen and hydrogen

Form

Stable aqueous dispersion

Appearance

Brown to dark-brown homogeneous liquid

GO Concentration

1–10 mg/mL*

Typical Concentration

5 mg/mL*

Carbon Content

Typically 45–55 wt.%*

Oxygen Content

Typically 40–50 wt.%*

Flake Lateral Size

0.5–10 µm*

Average Flake Size

1–5 µm*

Flake Thickness

~0.8–3 nm*

Number of Layers

Typically 1–5 layers

pH

2–5*

Zeta Potential

Typically negative

Solvent

Deionized water

Water Dispersibility

Excellent

Specific Surface Area (BET)

Typically 100–500 m²/g*

Surface Functional Groups

–OH, –COOH, C=O, C–O–C*

Electrical Conductivity

Low compared with graphene/rGO

Thermal Stability

Moderate; grade dependent

Colloidal Stability

Good under recommended storage conditions

UV–Vis Absorption

Strong absorption in UV/visible region*

Application Method

Spray / dip / spin coating / filtration / printing*

Storage Temperature

2–8°C recommended

Shelf Life

Typically 6–12 months*

Packaging

100 mL, 500 mL, 1 L, 5 L or customized

Key Features

  • Excellent aqueous dispersibility

  • High surface area and abundant oxygen-containing functional groups

  • Suitable for surface functionalization and chemical modification

  • Easy incorporation into polymers, coatings and composites

  • Good compatibility with water-based formulations

  • Useful precursor for reduced graphene oxide (rGO)

  • Suitable for layer-by-layer coating and thin-film fabrication

Typical Applications

  • Water-based conductive and functional coatings

  • Polymer nanocomposites

  • Corrosion-protection coatings

  • Membranes and filtration materials

  • Sensors and biosensors

  • Energy-storage materials

  • Supercapacitors and battery research

  • Adsorbents and environmental applications

  • Graphene-based inks

  • Surface modification and functional coatings

  • Research and nanotechnology applications

Recommended Characterization

For a professional GO dispersion TDS, report:

TEM/AFM → Flake size and thickness
Raman → D/G ratio and structural defects
XPS → C/O ratio and surface chemistry
FTIR → Oxygen-containing functional groups
XRD → Interlayer spacing
UV–Vis → Dispersion/absorption characteristics
DLS → Hydrodynamic size
Zeta Potential → Dispersion stability
TGA → Thermal behavior and composition
ICP-OES/EDS → Inorganic/metallic impurities

Important: GO properties vary significantly with the graphite precursor and oxidation/purification process. C/O ratio, flake size, thickness, concentration and pH should be confirmed experimentally before being stated as guaranteed specifications. Values marked with * should be treated as typical/target values.