Ti2C powder | Titanium Carbide | CAS 12316-56-2 | MXene phase

Short Description:

Titanium Carbide Ti2C is a novel type of 2D material known as a MXene, a compound composed of layered nitrides, carbides, or carbonitrides of transition metals.

We can supply particle size: 5μm

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Product Detail

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Product Description

Brief introduction

Product name: Ti2C (MXene)
Full name: Titanium Carbide
CAS No.: 12316-56-2
Appearance: Grey-black powder
Brand: Epoch
Purity: 99%
Particle size: 5μm
Storage: Dry clean warehouses, away from sunlight, heat, avoid direct sunlight, keep container seal.
XRD & MSDS: Available

Application

  1. Energy Storage Devices: Ti2C is widely used in the development of supercapacitors and batteries due to its excellent electrical conductivity and large surface area. Its layered structure allows for efficient ion intercalation, leading to high energy and power densities. Researchers are exploring Ti2C as an electrode material in lithium-ion batteries and sodium-ion batteries, enhancing their performance and lifespan.
  2. Electromagnetic Interference (EMI) Shielding: The metallic conductivity of Ti2C makes it an effective material for EMI shielding applications. It can be incorporated into composites or coatings to protect sensitive electronic devices from electromagnetic interference. This application is particularly important in the aerospace, automotive, and telecommunications industries, where shielding is crucial for device reliability and performance.
  3. Catalysis: Ti2C has shown promise as a catalyst or catalyst support in various chemical reactions, including hydrogen evolution and CO2 reduction. Its high surface area and active sites facilitate catalytic processes, making it a valuable material in the development of sustainable energy solutions. Researchers are investigating its potential in fuel cells and other green technologies.
  4. Biomedical Applications: Due to its biocompatibility and unique properties, Ti2C is being explored for biomedical applications, including drug delivery and tissue engineering. Its ability to interact with biological systems and its potential for functionalization make it a candidate for developing advanced biomaterials that can improve therapeutic outcomes.

Related Products

MAX Phase MXene Phase
Ti3AlC2, Ti3SiC2, Ti2AlC, Ti2AlN, Cr2AlC, Nb2AlC, V2AlC,Mo2GaC,

Nb2SnC, Ti3GeC2, Ti4AlN3,V4AlC3, ScAlC3, Mo2Ga2C, etc.

Ti3C2, Ti2C, Ti4N3, Nb4C3, Nb2C, V4C3, V2C, Mo3C2, Mo2C, Ta4C3, etc.

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