Titanium Nitride Powder / TiN Powder (TiN, 99.2+%, 800nm, Cubic)
The titanium nitride has a high melting point (2950 °C), high hardness, high-temperature chemical stability and excellent thermal conductivity properties. Also, it possesses high performance infrared absorption and UV-shielding more than 80%. Its sintering temperature is low..
Titanium Nitride Powder | |
Product No | NRE-5237 |
CAS No. | 25583-20-4 |
Formula | TiN |
APS | <100nm (Can be Customized) |
Purity | 99.9% |
Color | Black |
Molecular Weight | 61.8737 g/mol |
Density | 5.22 /cm3 |
Melting Point | 2947 °C |
Boiling Point | NA |
Titanium Nitride Powder (TiN) Product Features:
Introduction:
Titanium Nitride powder is a ceramic material composed of titanium and nitrogen. In its powdered form, TiN is a golden-yellow or metallic powder that is highly valued for its unique combination of mechanical, electrical, and chemical properties. As one of the most commonly used refractory metal nitrides, TiN has found applications in a wide range of industries, from coatings and electronics to medical devices and energy technologies.
Properties
High Hardness and Wear Resistance: TiN is a hard material (with a hardness of about 9 on the Mohs scale) and has excellent wear resistance. This makes it ideal for applications in high-stress environments.
High Melting Point: TiN has a high melting point (~2,950°C), which contributes to its stability in extreme environments.
Chemical Stability: TiN is chemically stable and resistant to oxidation, corrosion, and tarnishing, which makes it particularly valuable in harsh conditions.
Electrical Conductivity: While TiN is a ceramic, it has relatively good electrical conductivity, which is beneficial for specific applications in microelectronics and electrochemical devices.
Biocompatibility: TiN is non-toxic and biocompatible, making it suitable for medical and dental applications.
Aesthetic Appearance: TiN has a distinctive gold-like color, which makes it popular for decorative coatings in addition to functional uses.
Synthesis
Titanium Nitride powder is typically synthesized by methods such as:
Direct Nitride Synthesis: This involves reacting titanium with nitrogen gas at high temperatures (typically 800–1000°C) in a controlled environment.