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Tungsten Selenide Powder

Tungsten Selenide Powder

Tungsten Selenide Powder
Product No NRE-11271
CAS 12067-46-8
Purity 99.9%
Formula WSe2
APS <40 µm (Can be Customized)
Color grey to black
Molecular Weight 341.76 g/mol
Density 9.32 g/cm3
Melting Point > 1200 °C
Boiling Point NA

Tungsten Selenide Powder

Applications:

Electronics and Optoelectronics:

Field-Effect Transistors (FETs): Due to its high electron mobility, tungsten selenide is being explored in the development of transistors for high-performance electronic circuits, especially in flexible and transparent electronics.

Photodetectors and Light Emitting Devices: WSe₂ is used in photodetectors, light-emitting devices, and light sensors due to its strong photoluminescence properties. It can be integrated into optoelectronic devices that rely on light absorption and emission, such as lasers or photodetectors for use in communication technologies.

Flexible Electronics: The flexibility and thin-film nature of tungsten selenide make it an ideal candidate for use in flexible electronics, including wearable devices, flexible displays, and printed electronics. WSe₂ is being explored in stretchable circuits and transparent electronics.

Energy Storage and Conversion:

Lithium-ion Batteries and Supercapacitors: Tungsten selenide is being studied for its potential in energy storage devices, such as lithium-ion batteries and supercapacitors. Its high surface area and electrical conductivity make it a promising material for use as a cathode or anode material in batteries and for enhancing the energy density of supercapacitors.

Hydrogen Storage: WSe₂ has potential applications in hydrogen storage systems due to its ability to absorb and release hydrogen efficiently, which could contribute to the development of fuel cell technologies.

Photovoltaic Cells: Tungsten selenide, with its optical and electrical properties, can also be incorporated into solar cells or photovoltaic devices to enhance solar energy conversion efficiency.

Catalysis:

Catalysts for Chemical Reactions: Tungsten selenide powder has shown promise as a catalyst in various chemical reactions. It can be used in processes such as hydrogenation, dehydrogenation, and CO₂ reduction, where its electronic properties and high surface area make it an effective catalyst for energy-efficient chemical transformations.

Electrocatalysis: WSe₂ is being researched as a material for electrocatalysis applications, such as hydrogen evolution reaction (HER) and oxygen evolution reaction (OER), which are key reactions in water splitting and other energy conversion processes.

 

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