Thulium Oxide Sputtering Target
Thulium Oxide Sputtering Target
Thulium Oxide Sputtering Target | |
Product No | NRE-43151 |
CAS No. | 12036-44-1 |
Formula | Tm2O3 |
Molecular Weight | 385.88g/mol |
Purity | 99.99% |
Thickness | 3 mm ± 0.5mm (can be customized) |
Diameter | 50 mm ± 1mm (can be customized) |
Shape | Round |
Thulium Oxide Sputtering Target
Introduction:
Thulium oxide sputtering target is an inorganic compound derived from thulium, a rare earth element known for its unique optical, electrical, and thermal properties. It is characterized by its high melting point, chemical stability, and ability to absorb and emit light in specific wavelengths. Thulium oxide is increasingly used in various advanced applications, particularly in electronics, optics, and materials science.
Applications:
Optoelectronics:
Phosphors: Thulium oxide is used in phosphor materials for lighting and display applications, enhancing the brightness and color quality of LEDs and other optoelectronic devices.
Solid-State Lasers:
Tm₂O₃ can be employed as a dopant in solid-state lasers, particularly in laser applications that require specific wavelengths in the near-infrared range, such as in medical and industrial laser systems.
Thin Film Transistors (TFTs):
Thulium oxide serves as a high-k dielectric material in TFTs, improving the electrical performance of display technologies like LCDs and OLEDs.
Thermal Barrier Coatings:
Due to its high thermal stability, thulium oxide is used in thermal barrier coatings for aerospace and industrial applications, providing protection against extreme temperatures.
Sensing Applications:
Thulium oxide can be utilized in sensor technologies, particularly for gas sensing, leveraging its unique properties to enhance sensitivity and performance.
Research and Development:
Tm₂O₃ is of interest in materials science research, particularly in exploring its optical and electronic properties for potential applications in next-generation devices and systems.
Magnetic Applications:
Thulium oxide can also be used in certain magnetic applications, contributing to the development of advanced magnetic materials and devices.