Ti3CNTx MXene Phase Powder

Ti3CNTx MXene Phase Powder
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Ti3CNTx MXene Phase Powder is a two-dimensional transition metal carbonitride with high electrical conductivity, layered morphology, and tunable surface terminations. It combines the advantages of both carbides and nitrides, offering excellent electrochemical performance for energy storage, catalysis, sensing, and EMI shielding. As a leading supplier and manufacturer of premium MXene Phase Powder products, Shanghai Yuepeng can supply high-quality Ti3CNTx MXene Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.
Ti3CNTx MXene Phase Powder Data Sheet
| Purity: | ≥98% |
| Size : | 2–20 µm, 200–1000 nm or customized |
Ti3CNTx MXene Phase Powder Description
Ti3CNTx MXene Phase Powder is derived from layered titanium carbonitride through selective etching and intercalation processes. With its 2D nanosheet structure, large specific surface area, and metallic-like conductivity, Ti3CNTx MXene Phase Powder provides fast ion transport and strong electronic coupling. The presence of nitrogen atoms in its structure enhances stability and surface activity compared to pure carbide-based MXenes, making it especially effective in lithium/sodium-ion batteries, supercapacitors, hydrogen evolution reaction (HER), and advanced catalysis. Its tunable flake size and controllable surface chemistry enable flexible optimization for various applications, including sensors, water purification, and electromagnetic shielding.
Ti3CNTx MXene Phase Powder Specifications
| Attribute | Multilayer Ti3CNTx Powder | Single-Layer Ti3CNTx Powder |
| Etching Process | LiF/HCl Etching | |
| Size | 2–20 (µm) | 200–1000 (nm) |
| Number of Layers | Multilayer | ≤5 Layers |
| Conductivity (S/cm) | 10–100 | 2500 ± 500 |
| Surface Groups | -OH, =O, -F, -Cl | |
| Appearance | Black-purple powdered material | |
| Structure | Two-dimensional layered material | |
| Production Method | Prepared using hydrofluoric acid or lithium fluoride/hydrochloric acid to avoid the formation of titanium nitride | |
| Performance | High conductivity with excellent performance in electromagnetic shielding applications | |
| Storage | Stored in vacuum drying or inert environments | |
Ti3CNTx MXene Phase Powder Features
- Distinctive black-purple powder appearance with stable particle distribution.
- Unique two-dimensional layered architecture, offering large surface area and high structural integrity.
- Synthesized via selective etching routes that minimize titanium nitride formation, ensuring phase purity.
- Controllable flake size and thickness, adaptable to various research and industrial applications.
- Exceptional electrical conductivity, delivering superior performance in electromagnetic shielding and related technologies.
Ti3CNTx MXene Phase Powder Applications
- Energy Storage Devices: Ti3CNTx MXene is widely used in lithium-ion and sodium-ion batteries as an anode material, offering high electrical conductivity and rapid ion diffusion for improved capacity and cycling stability.
- Supercapacitors: Its large surface area and layered 2D structure make Ti3CNTx MXene an efficient electrode material for supercapacitors, delivering high capacitance and fast charge–discharge performance.
- Electromagnetic Interference (EMI) Shielding: Ti3CNTx MXene’s excellent conductivity and flexible layered morphology provide effective EMI shielding in electronics, aerospace, and communication applications.
- Catalysis and Electrocatalysis: Ti3CNTx MXene serves as a stable and active catalyst or catalyst support in hydrogen evolution reactions, oxygen reduction reactions, and other electrochemical processes.
- Sensors and Detection Systems: The material’s high surface reactivity and conductivity allow its use in gas sensors, biosensors, and environmental monitoring devices, ensuring high sensitivity and rapid response.
- Catalysis and Hydrogen Production
- Electromagnetic Shielding Materials
- Energy Storage Systems
- Sensing Devices
- Thermal Conductive Coatings
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