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Tin Selenide Powder

Tin Selenide Powder

Tin Selenide Powder
Product No NRE-11252
CAS No. 1315-06-6
Formula SnSe
Molecular Weight  197.67 g/mol
APS < 100 µm (can be customized)
Purity 99.9%
Density 6.179 g/cm³
Color Grey
Melting Point 861 °C
Boiling Point NA

Tin Selenide Powder

Applications

Thermoelectric Materials for Energy Harvesting:

One of the most promising applications of SnSe is in thermoelectric devices. The compound has a high thermoelectric figure of merit (ZT), meaning it is highly efficient at converting heat into electrical energy. SnSe is used in thermoelectric generators (TEGs), which can convert waste heat into usable electrical power. These devices are used in a wide range of applications, including automobile exhaust systems, industrial waste heat recovery, and space exploration, where efficient energy harvesting from heat sources is essential.

SnSe’s low thermal conductivity combined with its high electrical conductivity makes it an ideal material for use in high-efficiency thermoelectric devices.

Photovoltaic (Solar) Cells:

Due to its semiconducting properties, tin selenide is being explored for use in solar cells. Specifically, SnSe is being considered in thin-film solar cells due to its direct bandgap and potential for low-cost fabrication. The energy conversion efficiency of tin selenide in these cells is a subject of research, as it can be an alternative to more traditional materials like silicon and cadmium telluride.

In particular, SnSe-based solar cells may offer flexible and lightweight solutions for solar energy generation, making it an attractive material for next-generation solar technology.

Optoelectronic Devices:

Tin selenide’s semiconducting properties also make it useful in the development of optoelectronic devices such as light-emitting diodes (LEDs) and photodetectors. Its ability to absorb and emit light in the infrared and visible spectrum makes SnSe a candidate for use in devices that require the detection or generation of light.

In photodetectors, SnSe is being studied for applications in imaging systems, optical communication, and environmental monitoring, where light sensing and signal detection are essential.

Infrared Sensors:

SnSe is used in infrared (IR) sensors due to its bandgap that allows it to interact efficiently with infrared light. These sensors can be employed in various applications, including thermal imaging, night vision, and gas sensing. The compound’s sensitivity to infrared radiation makes it ideal for non-invasive detection of thermal emissions from objects, particularly in security, military, and industrial monitoring.

 

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