Ti2NbC2Tx MXene Phase Powder

Ti2NbC2Tx MXene Phase Powder

Ti2NbC2Tx MXene Phase Powder

  • Custom sizes and standard sizes in stock
  • Quick Lead Time
  • Competitive Price
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Ti2NbC2Tx MXene Phase Powder is a dark brown powder with a two-dimensional layered structure, high electrical conductivity, and excellent oxidation resistance. The introduction of niobium atoms at transition metal sites significantly enhances electrochemical performance, especially in energy storage applications. With controllable flake size and large surface area, it is ideal for use in batteries, supercapacitors, sensors, EMI shielding, and composite materials. For best stability, Ti2NbC2Tx MXene Phase Powder should be stored under vacuum or inert conditions. We can supply high-quality Ti2NbC2Tx MXene Phase Powder with various specifications and competitive prices, offering customized solutions to meet specific requirements.

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Ti2NbC2Tx MXene Phase Powder Data Sheet

Purity:≥98%
Size :2–20 µm, 200–1000 nm or customized

Ti2NbC2Tx MXene Phase Powder Description

Ti2NbC2Tx MXene Phase Powder is a two-dimensional layered material characterized by high electrical conductivity, tunable interlayer spacing, and excellent chemical stability. Produced via a LiF/HCl etching process, it offers controllable flake sizes and a stable layered structure. The incorporation of niobium atoms at transition metal sites enhances oxidation resistance and significantly improves electrochemical performance, particularly in high-voltage energy storage systems. With its large surface area and versatile surface terminations, Ti2NbC2Tx MXene Phase Powder is widely applied in batteries, supercapacitors, electrocatalysis, sensors, EMI shielding, and composite reinforcement. For long-term stability, it should be stored under vacuum or in an inert atmosphere.

Ti2NbC2Tx MXene Phase Powder Specifications

ProductMultilayer Ti2NbC2Tx PowderMonolayer Ti2NbC2Tx Powder
Etching MethodLiF/HCl etchingLiF/HCl etching + intercalation exfoliation
ColorBrown-blackBronze
Multilayer Size (µm)2–20 µm/
Monolayer Flake Diameter (nm)/200–1000 nm
Number of LayersMultilayer≤ 5 layers
Concentration (customizable)//
Conductivity (S/cm)10–1001000 ± 500
Surface Terminations–OH, =O, –F, –Cl–OH, =O, –F, –Cl

Ti2NbC2Tx MXene Phase Powder Features

  • Appearance: Brown powder material with a uniform morphology, suitable for advanced material processing and research applications.
  • Two-Dimensional Layered Structure: Possesses a 2D layered crystal structure that provides a large specific surface area, excellent ion transport channels, and tunable surface terminations.
  • Stable Preparation Method: Synthesized via a LiF/HCl etching process, which ensures good oxidation resistance and structural stability of the MXene flakes.
  • Controllable Flake Size: Flake diameter can be precisely adjusted to meet specific research or industrial application requirements, from nanoscale to microscale.
  • Niobium Doping Advantage: Incorporation of niobium atoms at transition metal sites significantly enhances electrochemical performance, particularly for high-voltage energy storage systems. For long-term stability, the powder should be stored under vacuum or in an inert atmosphere.

Ti2NbC2Tx MXene Phase Powder Applications

  • Energy Storage Devices: Applied in lithium-ion, sodium-ion, and zinc-ion batteries, where the niobium incorporation improves cycling stability and enhances high-voltage performance.
  • Supercapacitors: Serve as an electrode material with high electrical conductivity and large ion-accessible surface area, providing superior capacitance and fast charge–discharge capability.
  • Electrocatalysis: Functions as an efficient catalyst or catalyst support in the hydrogen evolution reaction (HER) and oxygen evolution reaction (OER), leveraging its layered structure and surface terminations.
  • Conductive Composites: Incorporated into polymers, ceramics, or metals to improve electrical conductivity, mechanical strength, and thermal stability of composite materials.
  • Sensors and EMI Shielding: Utilized in advanced sensors for detecting gases, biomolecules, or environmental parameters, and in electromagnetic interference (EMI) shielding due to its high conductivity and layered morphology.

Ti2NbC2Tx MXene Phase Powder Packaging

Ti2NbC2Tx 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.

Powder Packing

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To customize your Ti2NbC2Tx MXene phase powder, please provide the following details:

  1. Particle Size: Specify the desired particle size or range.
  2. Purity of the material
  3. Quantity of the powders you need.

Once we have these details, we can provide you with a quote within 24 hours.

We carry a wide variety of MXene phase series powder products in stock, and for these, there is generally no minimum order requirement. However, for custom orders, we typically set a minimum order value of $200. The lead time for stock items is usually 1-2 weeks, while custom orders usually take 3-4 weeks, depending on the specifics of the order.

Ti2NbC2Tx MXene phase powder has a unique combination of titanium and niobium in its structure, giving it higher oxidation resistance, better conductivity, and improved chemical stability compared to many other MXene powders.

Absolutely. Ti2NbC2Tx MXene phase powder can be incorporated into conductive inks and coatings, providing stable electrical conductivity and adhesion for flexible electronics and printed circuits.


Advanced Ceramic Hub, established in 2016 in Colorado, USA, is a specialized supplier and manufacturer of MXene phase powder products. With extensive expertise in supply and export, we offer competitive pricing and customized solutions tailored to specific requirements, ensuring outstanding quality and customer satisfaction. As a professional provider of ceramics, refractory metals, specialty alloys, spherical powders, and various advanced materials, we serve the research, development, and large-scale industrial production needs of the scientific and industrial sectors.

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