Mo4VAlC4 MXene Phase Powder

Mo4VAlC4 MXene Phase Powder
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Mo4VAlC4 MXene Phase Powder is a silver-gray layered 2D material featuring molybdenum and vanadium carbides. It offers high conductivity, oxidation resistance, and structural stability, making it well-suited for next-generation batteries, sensors, and catalytic systems. Its tunable flake size and surface chemistry enable versatile applications in both research and industrial fields. As a leading supplier and manufacturer of premium MXene Phase Powder products, Shanghai Yuepeng can supply high-quality Mo4VAlC4 MXene Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.
Mo4VAlC4 MXene Phase Powder Data Sheet
| Purity: | ≥98% |
| Size : | 2–20 µm, 200–1000 nm or customized |
Mo4VAlC4 MXene Phase Powder Description
Mo4VAlC4 MXene Phase Powder is a novel high-entropy two-dimensional carbide material derived from the MAX phase by selectively etching the aluminum layer. With a composition enriched in molybdenum and vanadium, this MXene exhibits excellent electrical conductivity, high-temperature stability, and promising catalytic activity. Its layered 2D structure provides a large surface area and tunable interlayer spacing, making it suitable for applications in energy storage, electrocatalysis, and protective coatings.
Mo4VAlC4 MXene Phase Powder Specifications
| Attribute | Multilayer Mo4VAlC4 Powder | Single-Layer Mo4VAlC4 Powder |
| Etching Process | LiF/HCl Etching | LiF/HCl Etching + Intercalating Agent Delamination |
| Size | 2–20 (µm) | 200–1000 (nm) |
| Number of Layers | Multilayer | ≤5 Layers |
| Conductivity (S/cm) | 10–100 | 1000 ± 500 |
| Surface Groups | -OH, =O, -F, -Cl | |
| Appearance | Brown powdered material | |
| Structure | Two-dimensional layered material | |
| Production Method | Synthesized using lithium fluoride/hydrochloric acid, providing excellent oxidation resistance | |
| Performance Enhancement | Incorporation of vanadium atoms at transition metal sites significantly improves energy storage performance | |
| Storage | Powder stored in vacuum drying or inert environments | |
Mo4VAlC4 MXene Phase Powder SEM
Mo4VAlC4 MXene Phase Powder Features
- Appearance: Supplied as a fine brown powder or a stable dark-blue colloidal solution, with uniform morphology.
- 2D Layered Structure: Exhibits a typical two-dimensional morphology with high surface area and tunable interlayer spacing.
- Advanced Synthesis: Produced via LiF/HCl etching, providing excellent oxidation resistance and stable performance.
- Controllable Flake Size: Flake dimensions can be tailored during synthesis to meet different application needs.
- Enhanced Energy Storage: Incorporation of vanadium atoms in the transition-metal sites significantly boosts electrochemical performance for batteries and supercapacitors.
Mo4VAlC4 MXene Phase Powder Applications
- Energy Storage Devices: Mo4VAlC4 MXene phase powder is used in supercapacitors and lithium/sodium-ion batteries due to its high electrical conductivity and layered structure that allows fast ion transport and charge storage.
- Electromagnetic Interference (EMI) Shielding: Its excellent electrical and dielectric properties make it an effective material for EMI shielding in electronics, protecting sensitive components from signal interference.
- Catalysis and Hydrogen Evolution Reaction (HER): Mo4VAlC4 MXene serves as an efficient catalyst for electrochemical reactions such as hydrogen evolution, benefiting from its active surface sites and high chemical stability.
- Sensor Technology: The material is applied in gas and biosensors, where its high surface reactivity and conductivity enable rapid response and high sensitivity.
- Thermal and Conductive Coatings: Mo4VAlC4 MXene powder can be used to produce coatings with enhanced thermal and electrical conductivity for aerospace, defense, and advanced industrial applications.
- Energy Storage Devices
- Catalyst Supports
- Optical Sensors
- Thermal Spraying
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