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High-Purity Indium Oxide In2O3 Mesh Powder Customized

Chemical Formula: In2O3

CAS: 1312-43-2

Model: Sup-In2O3

Purity: 99.999%-99.9999% (Customized)

Description: High-Purity Indium Oxide (In2O3) is a vital inorganic compound widely used in electronics, optoelectronics, and materials science. Known for its excellent optical transparency and electrical conductivity, In2O3 serves as an effective transparent conductive oxide (TCO) in applications such as touch screens, LCDs, and solar cells. Its unique properties make it ideal for gas sensors and thin-film transistors (TFTs). Explore how our high-purity In2O3 mesh powder can support your advanced research and development needs in high-performance materials and innovative electronic applications.

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Product Description

Chemical Name: Indium Oxide

Chemical Formula: In2O3

CAS: 1312-43-2

Purity: 99.999% (Customized)

Specifications: -60 mesh powder.

High-Purity Indium Oxide (In2O3) is an important inorganic compound widely used in electronics, optoelectronics, and materials science. As an oxide, In2O3 exhibits excellent conductivity and transparency, making it suitable for the production of various high-performance materials.

Physical and Chemical Properties

- Appearance: High-purity indium oxide typically appears as a white or light yellow powder, easy to handle and store.

- Density: The density of In2O3 is approximately 7.2 g/cm³, indicating its relatively high mass.

- Melting Point: It has a high melting point of around 1970 °C, suitable for applications under elevated temperature conditions, ensuring material stability.

- Solubility: High-purity indium oxide is insoluble in water but can dissolve in strong acids and bases, forming indium salts.


Applications

The main applications of high-purity indium oxide include:

1. Transparent Conductive Oxides:

   - In2O3 is an important transparent conductive material widely used in touch screens, liquid crystal displays, and solar cells.

2. Gas Sensors:

   - High-purity indium oxide is used in gas sensors, particularly for detecting harmful gases and in environmental monitoring.

3. Dopant:

   - In certain semiconductor materials, In2O3 can act as a dopant, improving conductivity and performance, especially in indium-based alloys.

4. Thin Film Transistors:

   - High-purity indium oxide is used in the manufacture of thin-film transistors (TFTs), widely applied in display technologies.


Summary

High-purity indium oxide, with its superior physical and chemical properties, demonstrates significant application potential across various fields. As technology continues to advance, In2O3 will play an important role in the development of new electronic devices and high-performance materials.

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