1315-11-3
ZnTe
305200PD
99.99 %- 99.999 %
- 200 mesh.etc
215-260-2
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Characteristic
Zinc telluride is a binary chemical compound with the formula ZnTe. This solid is a semiconductor material with a direct band gap of 2.26 eV. It is usually a p-type semiconductor. Its crystal structure is cubic, like that for sphalerite and diamond.
Chemical formula:ZnTe
Molar mass:192.99 g/mol
Appearance:red crystals
Density:6.34 g/cm3
Melting point:1,295 °C; 2,363 °F; 1,568 K
Band gap:2.26 eV
Electron mobility:340 cm2/(V·s)
Thermal conductivity:108 mW/(cm·K)
Refractive index (nD):3.56
Crystal structure:Zincblende (cubic)
Application
The main USES of zinc telluride and zinc selenide are similar, can be used as a semiconductor and infrared material, and has the characteristics of optical conductivity, fluorescence and so on.
Zinc telluride crystals have good electro-optical effects under near-infrared (~ 800nm) ultrafine pulse action and mature preparation technology. They are commonly used as optical rectifying THz radiation source and detection material, and also have applications in green light emitting devices, solar cells, waveguides, modulators and other photoelectric devices.
Characteristic
Zinc telluride is a binary chemical compound with the formula ZnTe. This solid is a semiconductor material with a direct band gap of 2.26 eV. It is usually a p-type semiconductor. Its crystal structure is cubic, like that for sphalerite and diamond.
Chemical formula:ZnTe
Molar mass:192.99 g/mol
Appearance:red crystals
Density:6.34 g/cm3
Melting point:1,295 °C; 2,363 °F; 1,568 K
Band gap:2.26 eV
Electron mobility:340 cm2/(V·s)
Thermal conductivity:108 mW/(cm·K)
Refractive index (nD):3.56
Crystal structure:Zincblende (cubic)
Application
The main USES of zinc telluride and zinc selenide are similar, can be used as a semiconductor and infrared material, and has the characteristics of optical conductivity, fluorescence and so on.
Zinc telluride crystals have good electro-optical effects under near-infrared (~ 800nm) ultrafine pulse action and mature preparation technology. They are commonly used as optical rectifying THz radiation source and detection material, and also have applications in green light emitting devices, solar cells, waveguides, modulators and other photoelectric devices.
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