Lanthanum Lithium Titanate Sputtering Targets
Lanthanum Lithium Titanate Sputtering Targets
Lanthanum Lithium Titanate Sputtering Targets | |
Product No | NRE-43233 |
CAS No. | NA |
Formula | La(1-x) LixTiO3 |
Molecular Weight | NA |
Purity | >99.9% |
Density | NA |
Thickness | 3 mm ± 0.5mm (can be customized) |
Diameter | 50 mm ± 1mm (can be customized) |
Shape | Round |
Resistivity | NA |
Thermal Conductivity | NA |
Lanthanum Lithium Titanate Sputtering Targets
Introduction
Lanthanum lithium titanate (LiLaTiO3) is a complex oxide known for its unique dielectric properties and ionic conductivity. This perovskite material is gaining attention in various technological applications due to its stability and performance in electronic devices. Sputtering targets made from lanthanum lithium titanate are used for the deposition of high-quality thin films, essential for advancing a range of technologies.
Applications
Dielectric Materials:
High-K Dielectrics: LiLaTiO3 is utilized as a high-k dielectric material in capacitors and transistors, where it enhances capacitance and improves device performance.
Solid Oxide Fuel Cells (SOFCs):
Electrolyte Materials: Its ionic conductivity makes lanthanum lithium titanate suitable for use as an electrolyte in SOFCs, contributing to improved efficiency and stability.
Thin Film Transistors (TFTs):
Display Technologies: Sputtered films of LiLaTiO3 are explored for use in TFTs, providing enhanced performance in liquid crystal displays (LCDs) and organic light-emitting diodes (OLEDs).
Energy Harvesting:
Piezoelectric Applications: Research is ongoing into the use of LiLaTiO3 in energy harvesting devices, where its piezoelectric properties can convert mechanical energy into electrical energy.
Sensors:
Gas Sensors: The material’s sensitivity to environmental changes makes it suitable for developing gas sensors, particularly for detecting humidity and various gases.
Catalysis:
Catalytic Supports: Lanthanum lithium titanate can serve as a support material in catalytic applications, enhancing the performance of catalysts in various chemical processes.