Neodymium Aluminate Sputtering Targets
Neodymium Aluminate Sputtering Targets
Neodymium Aluminate Sputtering Targets | |
Product No | NRE-43257 |
CAS No. | NA |
Formula | NdAlO3 |
Molecular Weight | 216.87 |
Purity | >99.9% |
Density | 6.7-7.14 g/cm3 |
Thickness | 3 mm ± 0.5mm (can be customized) |
Diameter | 50 mm ± 1mm (can be customized) |
Shape | Round |
Resistivity | NA |
Thermal Conductivity | NA |
Neodymium Aluminate Sputtering Targets
Introduction
Neodymium aluminate (NdAlO₃) is a compound composed of neodymium, aluminum, and oxygen. It has garnered attention due to its unique crystal structure and excellent optical, electrical, and thermal properties. Neodymium aluminate is particularly valued in the fields of electronics, optics, and materials science.
Applications
Electronics:
Dielectric Materials: Used as a dielectric layer in capacitors and other electronic components due to its high dielectric constant and stability.
Thin Film Transistors (TFTs): Employed in the fabrication of TFTs, providing reliable performance in display technologies.
Optoelectronics:
Laser Gain Medium: NdAlO₃ can be used as a host material for neodymium-doped lasers, contributing to the efficiency and performance of solid-state lasers.
Optical Coatings: Its optical properties make it suitable for thin films in optical coatings, enhancing performance in lenses and mirrors.
Photovoltaics:
Solar Cells: Investigated for use in thin-film solar cells, where its properties can improve light absorption and conversion efficiency.
Catalysis:
Catalyst Support: NdAlO₃ can serve as a support material for catalysts in various chemical reactions, contributing to enhanced catalytic activity.
Research and Development:
Materials Science: Used in studies to explore the properties of perovskite materials and their applications in various high-tech fields.
Superconductivity Research: Investigated for its potential use in superconducting materials and devices.
Sensors:
Gas Sensors: Neodymium aluminate films may be employed in gas sensing applications due to their sensitivity to environmental changes.