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TeO2 Crystal Tellurium Dioxide Customized

Element Symbol:TeO2
CAS:7446-07-3
Model:Sup-TeO2
Shape:Wafer, Disc or ingot
Thickness:[N/A]
Dimension:[N/A]
(Note: Purity, shape, thickness, and dimensions can all be customized)

Description: TeO2 Crystals (Tellurium Dioxide Crystals) are a significant form of the inorganic compound tellurium dioxide, known for their unique properties and wide range of applications in various fields, particularly in optics and electronics.

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TeO2 Crystals (Tellurium Dioxide Crystals) are a significant form of the inorganic compound tellurium dioxide, known for their unique properties and wide range of applications in various fields, particularly in optics and electronics.

Note: Purity, shape, thickness, and dimensions can all be customized,Please feel free to contact us for more details.


TeO2 Crystal Main Characteristics

1. Crystal Structure:

   - TeO2 typically crystallizes in a tetragonal or orthorhombic structure, which contributes to its stability and unique optical characteristics.

2. Appearance:

   - The crystals are usually colorless or white and exhibit a glassy luster, making them suitable for optical applications.

3. Density:

   - The density of TeO2 crystals is approximately 5.89 g/cm³.

4. Melting Point:

   - They have a melting point around 732°C (1349°F), allowing them to maintain stability at elevated temperatures.

5. Optical Properties:

   - TeO2 crystals possess excellent optical transparency and high refractive index, which are advantageous for use in optical devices and systems.

6. Electrical Conductivity:

   - Under certain conditions, these crystals exhibit semiconductor properties, enhancing their applicability in electronic devices.

TeO2 Crystal Applications 

1. Optical Devices:

   - Used in the fabrication of lenses, prisms, and other optical components due to their favorable light transmission properties.

2. Nonlinear Optics:

   - TeO2 crystals are known for their nonlinear optical characteristics, making them suitable for applications in frequency conversion and optical parametric oscillators.

3. Semiconductor Industry:

   - In semiconductor devices, tellurium dioxide is used as a dopant and thin film material to improve electrical performance and is applicable in various electronic components.

4. Electronics:

   - TeO2 crystals exhibit good electrical conductivity in certain applications, making them suitable for use in electronic components.

5. Laser Technology:

   - Utilized in laser systems for their ability to effectively manipulate light.

6. Sensors:

   - Applied in various types of sensors, taking advantage of their electrical and optical properties.

Summary

TeO₂ crystals represent an important form of tellurium dioxide, distinguished by their unique physical and chemical properties. Their applications in optics, electronics, and materials science make them valuable components in advancing technology across multiple fields.

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