Aluminum Antimonide Nanoparticles
Aluminum Antimonide Nanoparticles
Aluminum Antimonide Nanoparticles | |
Product No | NRE-5001 |
CAS No. | 25152-52-7 |
Formula | AlSb |
APS | <100 nm (Can be Customized) |
Purity | 99.9% |
Color | Black |
Molecular Weight | 148.74 g/mol |
Density | 4.26 g/cm3 |
Melting Point | 1060 °C |
Boiling Point | 2467 °C |
Aluminum Antimonide Nanoparticles
Applications
Semiconductors and Electronics:
High-Speed Electronics: AlSb nanoparticles, due to their high electron mobility, are used in the development of high-speed semiconductor devices. They can be incorporated into transistors, high-frequency devices, and microwave components for use in telecommunications, radar, and other high-performance electronic systems.
Infrared Devices: AlSb has a direct bandgap that allows it to efficiently emit and detect light in the infrared (IR) range. Therefore, AlSb nanoparticles are used in the production of IR LEDs, lasers, and photodetectors for communication systems, night vision, and medical imaging technologies.
Infrared Sensors: Due to its ability to detect IR light, AlSb nanoparticles are utilized in infrared sensors, which are used in thermal imaging and gas detection systems.
Thermoelectric Applications:
Thermoelectric Generators: AlSb nanoparticles are of particular interest in the field of thermoelectric materials. Due to their excellent thermoelectric properties, they can be used in thermoelectric generators (TEGs) that convert heat directly into electricity. These devices can be used in energy harvesting, waste heat recovery, and remote power applications.
Thermoelectric Coolers: AlSb nanoparticles are also studied for use in thermoelectric cooling devices, which have applications in electronics cooling and temperature regulation for portable refrigerators, lasers, and other precision instruments that require temperature stability.
Optoelectronics:
Infrared LEDs and Lasers: The direct bandgap of AlSb makes it highly efficient for infrared optoelectronics. AlSb nanoparticles are used to produce infrared LEDs and laser diodes for applications in communication systems, medical diagnostics, and remote sensing.
Photodetectors: AlSb is used in the production of photodetectors for infrared imaging systems, where it can detect IR radiation from objects at high temperatures. These photodetectors are used in surveillance systems, night vision cameras, and scientific instruments.
Thermal Management:
Heat Dissipation: Due to their high thermal conductivity, AlSb nanoparticles can be used in heat dissipation applications for electronic devices that generate high heat. They can be incorporated into composite materials that improve the heat management of components such as power electronics, LEDs, and laser diodes, helping prevent overheating and improving overall efficiency.