MXene Colloidal Solution

₹1850.00

MXene Colloidal Solution — Technical Specifications

Below is a professional TDS-style specification for a water-based MXene colloidal dispersion. Exact values should be adjusted according to the specific MXene composition, concentration, and your batch COA.

Parameter

Typical / Target Specification

Product Name

MXene Colloidal Solution

Material Type

2D transition-metal carbide/nitride colloidal dispersion

Typical MXene

Ti₃C₂Tₓ*

Chemical Formula

Ti₃C₂Tₓ*

Appearance

Dark grey to black homogeneous dispersion

Form

Aqueous colloidal solution

MXene Concentration

1–10 mg/mL*

Typical Concentration

5 mg/mL*

Flake Lateral Size

0.5–10 µm*

Flake Thickness

~1–5 nm*

Number of Layers

Few-layer / multilayer, grade dependent

pH

Typically 4–7*

Zeta Potential

Typically negative

Solvent

Deionized water

Dispersion Stability

Good when stored under recommended conditions

Electrical Conductivity

High; concentration and film morphology dependent

Sheet Resistance

Application/film-thickness dependent

Specific Surface Area

Typically 20–100 m²/g*

Surface Terminations

–O, –OH, –F and other Tₓ groups*

Recommended Film Thickness

50 nm–10 µm*

Substrate Compatibility

Glass, PET, PI, Si, metals and selected polymers*

Application Methods

Spray, dip, spin coating, drop casting, filtration, printing*

Drying Temperature

Ambient–100°C*

Storage Temperature

2–8°C recommended

Shelf Life

Typically 3–6 months*

Packaging

10 mL, 25 mL, 50 mL, 100 mL, 500 mL, 1 L or customized

Key Features

  • High electrical conductivity

  • Excellent electromagnetic interference (EMI) shielding potential

  • High surface area

  • Two-dimensional layered structure

  • Excellent solution processability

  • Suitable for conductive coatings and thin films

  • Good compatibility with polymers and other nanomaterials

  • Surface chemistry can be tailored through functionalization

Typical Applications

  • EMI shielding coatings

  • Conductive coatings and inks

  • Sensors and biosensors

  • Supercapacitor electrodes

  • Battery electrode materials

  • Flexible and wearable electronics

  • Photothermal applications

  • Membranes and separation materials

  • Polymer nanocomposites

  • Energy-storage devices

  • Electrocatalysis

Recommended Characterization

For a professional MXene TDS, I recommend including:

XRD → Layer spacing and crystal structure
SEM/TEM → Flake morphology and dimensions
AFM → Flake thickness
XPS → Surface terminations and elemental composition
Raman → Structural characterization
EDS/ICP-OES → Elemental composition
UV-Vis → Dispersion characteristics
DLS → Hydrodynamic particle-size distribution
Zeta potential → Colloidal stability
Four-point probe → Electrical conductivity
TGA → Thermal stability and composition

Important: MXene is a family of materials, not a single compound. If your product is specifically Ti₃C₂Tₓ, the TDS should state that explicitly. Also, aqueous MXene dispersions can oxidize over time, so storage temperature, oxygen exposure, concentration, and shelf-life should be established experimentally rather than claimed generically.

Values marked with an asterisk are typical/target ranges and should be replaced with your actual measured specifications for a customer-facing TDS.