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Lanthanum Niobate Sputtering Targets

Lanthanum Niobate Sputtering Targets

Lanthanum Niobate Sputtering Targets
Product No NRE-43474
CAS No. 12031-17-3
Formula LaNbO4
Molecular Weight 295.81
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 Niobate Sputtering Targets

Introduction

Lanthanum niobate (LaNbO4) is a perovskite oxide known for its unique dielectric, ferroelectric, and piezoelectric properties. These characteristics make it a promising material for various advanced technological applications. Sputtering targets made from lanthanum niobate are utilized for the deposition of high-quality thin films, which are essential in fields such as electronics, telecommunications, and energy.

Applications

Dielectric Materials:

High-K Dielectrics: LaNbO4 is explored as a high-k dielectric material in capacitors and transistors, where its properties can enhance capacitance and device performance, particularly in integrated circuits.

Ferroelectric Devices:

Memory Storage: Due to its ferroelectric properties, lanthanum niobate is used in ferroelectric random-access memory (FeRAM) applications, enabling non-volatile data storage with low power consumption.

Piezoelectric Applications:

Sensors and Actuators: LaNbO4 is being investigated for use in sensors and actuators, where its piezoelectric properties can convert mechanical stress into electrical signals and vice versa.

Optoelectronics:

Photonic Devices: The material’s dielectric properties make it suitable for photonic applications, including waveguides and optical coatings that enhance light transmission and manipulation.

Energy Harvesting:

Energy Conversion: Research is ongoing into the use of lanthanum niobate in energy harvesting devices, where its properties can be leveraged to convert ambient energy (like mechanical vibrations) into electrical energy.

Catalytic Applications:

Catalyst Support: Lanthanum niobate can serve as a support material in catalytic processes, enhancing the activity and selectivity of various catalysts in chemical reactions.

 

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