Chemical Formula: TiS2
CAS: 12039-13-3
Model: Sup-TiS2
Purity: 99.999% (Customized)
Product Description
Chemical Name: Titanium Disulfide
Chemical Formula: TiS2
CAS: 12039-13-3
Purity: 99.999% (Customized)
Specifications: granule size of 1-15 mm.
High Purity Titanium Disulfide is an important two-dimensional material widely used in electronics, optoelectronics, and energy storage fields. This material exhibits good conductivity and excellent optical properties, making it particularly suitable for high-performance electronic devices and catalytic reactions.
Physical and Chemical Properties
- Density: The density of high purity TiS2 is approximately 4.0 g/cm³, and the specific value may vary depending on the synthesis method and purity.
- Melting Point: The melting point of titanium disulfide is about 1,100 °C, providing good thermal stability.
- Hardness: This material exhibits moderate hardness, suitable for various application environments.
- Electrical Conductivity: High purity TiS2 has good electrical conductivity, suitable for electronic devices.
- Optical Properties: It has good transmittance in the visible and near-infrared ranges, making it applicable in optoelectronic fields.
Applications
High purity titanium disulfide is mainly applied in the semiconductor and optoelectronic fields, including:
1. Field Effect Transistors: Used to manufacture high-performance field effect transistors for fast switching and high efficiency.
2. Photodetectors: Widely used in photodetectors to enhance sensitivity and response speed.
3. Lithium-ion Batteries: As an anode material, TiS2 can increase energy density and cycle stability of batteries.
4. Catalytic Reactions: TiS2 acts as a catalyst, facilitating chemical reactions, especially in hydrogen generation applications.
Summary
High purity titanium disulfide, with its superior physical and chemical properties, demonstrates broad application potential in electronics, optoelectronics, and energy storage fields. As technology continues to advance, its range of applications is expected to expand further, supporting the development and manufacturing of high-performance materials.
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