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Ti2C MXene powder

Ti2C MXene powder

700 INR/Bottle

Product Details:

  • Taste Taste not applicable
  • Ph Level Neutral
  • Other Names Ti2C; MXene
  • Shape Flake-like; layered
  • Smell Odorless
  • Solubility Insoluble in water; dispersible in polar solvents
  • Refractive Rate Not determined
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Ti2C MXene powder Price And Quantity

  • 1 Gram
  • 700 INR/Bottle

Ti2C MXene powder Product Specifications

  • 111.77 g/mol (calculated for Ti2C)
  • 28499090
  • Inorganic compound; 2D nanomaterial
  • Insoluble in water; dispersible in polar solvents
  • Not determined
  • Ti2C; MXene
  • Flake-like; layered
  • Odorless
  • Taste not applicable
  • Titanium carbide MXene
  • Neutral
  • Material research, advanced electronics, conductive films
  • Custom synthesis standard
  • N/A (Not listed in EINECS)
  • Not applicable (decomposes before boiling)
  • Ti2C
  • 3.2 Gram per cubic centimeter(g/cm3)
  • Powder
  • Store in airtight container, dry and cool place, away from moisture
  • Energy storage, batteries, supercapacitors, electromagnetic shielding, sensors, catalysis
  • Layered structure of titanium and carbon (Ti2C)
  • >1600C (approx., decomposes before melting)
  • >99%
  • Research/Synthesis Grade
  • Powder
  • N/A (Not officially assigned)
  • Ti2C MXene (Titanium carbide-based 2D material)
  • Yes

Product Description

 Ti2C MXene powder

Product

Ti2C MXene powder

Colour

Black Powder

Purity

99%

Ingredient

Ti2C

Product Code

NCZ-MX-112

CAS

12316-56-2

APPLICATION FIELDS

High-temperature coating, MXene precursor, conductiveself-lubricating ceramic, lithium-ion battery, supercapacitor, electrochemicalcatalysis.

 

 



Advanced Features and Composition

Ti2C MXene powder stands out due to its exceptional electrical conductivity, unique two-dimensional structure, and extensive surface functionality. It consists of layered titanium and carbon, with typical surface terminations of F, OH, or O groups, enhancing its compatibility with various applications. Its composition and form make it highly effective for research purposes and integration into innovative materials science projects.


Handling, Packaging, and Storage

Given its hygroscopic nature, Ti2C MXene powder is packaged in sealed, argon-filled bottles to protect against moisture and air exposure. To maintain quality, it should be stored in an airtight container in a cool, dry place. With over 99% purity and research/synthesis-grade quality, it offers reliable stability for up to 12 months under recommended storage conditions.


Wide Range of Applications

The unique properties of Ti2C MXene powder enable its use in demanding fields such as advanced electronics, electromagnetic shielding, energy storage devices, and catalysis. Its nanoscale particle size and layer thickness provide versatility, while its non-toxic character and high stability make it suitable for both laboratory research and industrial-scale projects.

FAQs of Ti2C MXene powder:


Q: How should Ti2C MXene powder be stored to maintain its quality?

A: Ti2C MXene powder should be stored in an airtight container within a dry, cool environment, away from moisture and air. It is supplied in sealed, argon-packed bottles, and following these storage guidelines helps preserve its stability and effectiveness for up to 12 months.

Q: What are the primary benefits of using Ti2C MXene powder in material research?

A: Researchers value Ti2C MXene powder for its high electrical conductivity, large surface area, and customizable surface terminations, enabling applications in energy storage, batteries, supercapacitors, and advanced electronics. Its high purity and unique 2D structure make it a powerful material for developing modern technologies.

Q: When is Ti2C MXene powder most effectively utilized in energy-related applications?

A: Ti2C MXene powder delivers optimal performance in energy storage and conversion devices, such as batteries and supercapacitors, due to its rapid electron transfer capabilities and large interfacial area. It is especially suitable during the materials development and prototyping phases of research and product design.

Q: Where does the high crystallinity and conductivity of Ti2C MXene powder come from?

A: These properties stem from its synthesis methodselective etching of the Ti2AlC MAX phasewhich produces a high-quality, layered titanium carbide with few defects. The resulting structure supports robust electron mobility and structural stability.

Q: What is the recommended process for dispersing Ti2C MXene powder in a solution?

A: While Ti2C MXene powder is insoluble in water, it disperses effectively in polar solvents. For best results, add the powder slowly to the solvent under inert conditions and use gentle agitation or sonication to achieve a stable dispersion.

Q: Is Ti2C MXene powder toxic or hazardous to handle?

A: Ti2C MXene powder is non-toxic when handled under standard laboratory conditions. However, it is important to avoid ingestion, inhalation, and prolonged skin contact. Always use appropriate personal protective equipment and standard handling procedures.

Q: What makes Ti2C MXene powder advantageous for electronic applications?

A: Its exceptionally high electrical conductivity, flake-like nanoscale structure, and ability to form thin, conductive films make Ti2C MXene powder ideal for use in advanced electronics, electromagnetic shielding, and sensor technologies.

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