TiNbCTx MXene Phase Powder
TiNbCTx MXene Phase Powder
TiNbCTx MXene Phase Powder is a high-performance 2D material known for its combination of electrical conductivity and surface reactivity. Its layered structure allows functional modification and rapid ion transport, making it suitable for supercapacitors, sensors, and water treatment membranes. It also enhances the strength and durability of composites and ceramics. With stable chemical properties and versatile applications, TiNbCTx is a promising material for advanced electronics and sustainable technologies. We can supply high-quality TiNbCTx MXene Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.
Or email us at sales@heegermaterials.com.TiNbCTx MXene Phase Powder Data Sheet
Purity: | ≥98% |
Size : | 2–20 µm, 200–1000 nm or customized |
TiNbCTx MXene Phase Powder Description
TiNbCTx MXene Phase Powder is a cutting-edge 2D material featuring a layered structure with excellent metallic conductivity and tunable surface chemistry. Its design enables easy intercalation and functionalization, making it ideal for energy storage, sensors, and environmental applications. The material also reinforces structural composites and ceramics, improving mechanical strength and multifunctional performance. With high chemical stability and adaptability, it is suitable for advanced coatings and electronic devices. TiNbCTx is emerging as a key material for next-generation smart and sustainable technologies.
TiNbCTx MXene Phase Powder SEM
TiNbCTx MXene Phase Powder Specifications
Product | Multilayer TiNbCTx Powder | Single-layer TiNbCTx Powder |
---|---|---|
Etching Method | LiF/HCl etching | LiF/HCl etching + intercalation exfoliation |
Color | Brown | Copper brown |
Multilayer Size (µm) | 2–20 | / |
Single-layer Flake Size (nm) | / | 200–1000 |
Number of Layers | Multilayer | ≤5 layers |
Concentration (Customizable) | / | / |
Conductivity (S/cm) | 10–100 | 800 ± 500 |
Surface Functional Groups | -OH, =O, -F, -Cl | -OH, =O, -F, -Cl |
TiNbCTx MXene Phase Powder Features
- Appearance and Form: Brown powder with uniform particle distribution, ensuring consistent handling and processing in various applications.
- Layered Structure: Exhibits a two-dimensional layered morphology, offering high surface area and tunable interlayer spacing for enhanced material performance.
- Stable Etching Process: Prepared using a LiF/HCl etching system, which improves chemical stability and minimizes defects during synthesis.
- Controllable Flake Size: Flake diameters can be precisely controlled, allowing optimization of electrical, mechanical, and electrochemical properties.
- Enhanced Transition Metal Sites: Niobium atoms are introduced at transition metal positions, improving electrochemical activity and conductivity; recommended storage is under vacuum or inert atmosphere to preserve material integrity.
TiNbCTx MXene Phase Powder Applications
- Energy Storage: Used in high-performance batteries and supercapacitors due to its high conductivity and tunable layered structure.
- Electrocatalysis: Enhances catalytic activity in hydrogen evolution and oxygen reduction reactions by leveraging Nb-doped transition metal sites.
- Sensors: Serves as a sensitive material for chemical and biosensors because of its large surface area and functionalizable surfaces.
- Electromagnetic Interference (EMI) Shielding: Effective in EMI shielding films and coatings thanks to its excellent electrical conductivity and layered morphology.
- Composite Materials: Incorporated into polymer or ceramic composites to improve mechanical strength, thermal stability, and electrical performance.
Nb2CTx MXene Phase Powder Packaging
TiNbCTx MXene Phase Powder is typically packaged in sealed, moisture-proof plastic bags, then placed in sturdy drum containers or fiber cartons to prevent contamination and ensure safe transport. Standard packaging sizes include 1 kg, 5 kg, and 10 kg options, with custom packaging available upon request to meet specific usage or storage needs.
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