Lanthanum Strontium Copper Oxide Sputtering Targets
Lanthanum Strontium Copper Oxide Sputtering Targets
Lanthanum Strontium Copper Oxide Sputtering Targets | |
Product No | NRE-43238 |
CAS No. | 111419-39-7 |
Formula | La(1-x)SrxCuO4 |
Molecular Weight | 397.662 |
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 Strontium Copper Oxide Sputtering Targets
Introduction
Lanthanum strontium copper oxide sputtering targets. This compound exhibits remarkable electrical and magnetic properties, making it of great interest in various advanced technological applications. Sputtering targets made from LSCO are utilized for the deposition of high-quality thin films, which are crucial for innovative electronic devices.
Applications
High-Temperature Superconductors:
LSCO is well-known for its superconducting properties at relatively high temperatures. It is used in applications that require efficient power transmission and magnetic levitation, contributing to technologies like maglev trains and power grid enhancements.
Thin Film Transistors (TFTs):
LSCO films can be employed in TFTs for display technologies, enhancing performance in electronic devices such as televisions, smartphones, and computer screens.
Spintronic Devices:
The unique electronic and magnetic properties of LSCO make it suitable for spintronics, where both electron charge and spin are utilized for data storage and processing, leading to faster and more efficient devices.
Sensors:
LSCO-based thin films are explored in sensor applications, including gas sensors and temperature sensors, due to their sensitive response to environmental changes.
Optical Applications:
LSCO’s properties allow it to be used in optical coatings, particularly in devices that operate in the infrared range, enhancing performance in communication technologies.
Catalytic Applications:
The compound shows potential in catalytic processes, including fuel cells and other energy conversion technologies, leveraging its stability and reactivity under various conditions.