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Aluminum Telluride Sputtering Targets

Aluminum Telluride Sputtering Targets

Aluminum Telluride Sputtering Targets
Product No NRE-43315
CAS No. NA
Formula Al2Te3
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

Aluminum Telluride Sputtering Targets

Aluminum telluride (Al₂Te₃) sputtering targets are used to deposit thin films of aluminum telluride, which have specific properties suitable for various advanced applications. Here’s a detailed look at the applications and benefits of aluminum telluride sputtering targets.

 Semiconductor Devices

Thin-Film Semiconductors:

Application: Aluminum telluride films are used as thin-film semiconductors in electronic devices.

Benefits: Offers semiconductor properties suitable for high-efficiency electronic applications.

Technical Detail: Aluminum telluride can be used in semiconductor applications due to its direct bandgap, which allows for efficient electronic and optoelectronic properties.

Photodetectors:

Application: Employed in the fabrication of photodetectors and other optoelectronic devices.

Benefits: Provides high sensitivity and efficiency in detecting optical signals.

Technical Detail: The direct bandgap of aluminum telluride is advantageous for detecting a range of light wavelengths, making it useful in various optical sensing applications.

Optical Coatings

Infrared Detectors:

Application: Used in infrared (IR) detector coatings for applications in thermal imaging and IR sensing.

Benefits: Enhances the sensitivity and accuracy of infrared detection.

Technical Detail: Aluminum telluride’s optical properties are suitable for infrared applications, providing high absorption and efficient detection in the infrared spectrum.

Anti-Reflective Coatings:

Application: Applied to create anti-reflective coatings on optical devices such as lenses and sensors.

Benefits: Reduces reflection and improves light transmission, enhancing the performance of optical systems.

Technical Detail: The refractive index of aluminum telluride can be engineered to achieve specific anti-reflective properties.

 Thin-Film Solar Cells

Solar Cell Layers:

Application: Used in the production of thin-film solar cells as a semiconductor material.

Benefits: Contributes to the efficiency of solar cells by providing a suitable material for photovoltaic applications.

Technical Detail: Aluminum telluride can be used in thin-film solar cells due to its semiconductor properties, helping to improve energy conversion efficiency.

Thermoelectric Materials

Thermoelectric Devices:

Application: Used in thermoelectric devices for converting heat into electrical energy.

Benefits: Aluminum telluride’s thermoelectric properties are used to improve the efficiency of energy conversion in thermoelectric applications.

Technical Detail: The material’s ability to efficiently convert thermal energy into electrical energy makes it suitable for thermoelectric applications.

 

 

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