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.
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