Indium Selenide (CAS:12056-07-4): A Versatile Semiconductor Material for Advanced Applications
Discover the unique properties and applications of high-purity Indium Selenide, a key material for next-generation electronics.
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Indium Selenide
Indium Selenide, identified by CAS number 12056-07-4, is a critical compound in the field of advanced materials, particularly for semiconductor and optoelectronic applications. With its molecular formula In2Se3 and a molecular weight of 466.52, it possesses a density of 5.67 g/mL at 25°C and a high melting point of 890°C. Its silver-gray lump appearance signifies its solid state at room temperature. This material is highly valued for its purity, often exceeding 97%, making it suitable for demanding technological processes.
- Explore the unique properties of indium selenide for electronic applications, offering precise control over electrical flow in advanced devices.
- Learn about high purity indium selenide and its significance in manufacturing high-performance semiconductor materials.
- Understand the role of indium(III) selenide properties in enabling next-generation chip technology and optoelectronic advancements.
- Discover how semiconductor grade indium selenide is crucial for creating efficient and reliable electronic components.
Key Advantages
High Purity and Performance
Leverage the benefits of high purity indium selenide, ensuring optimal performance and reliability in sensitive electronic applications.
Versatile Applications
Utilize indium selenide for electronic applications, from advanced semiconductors to thin-film displays, driving innovation in technology.
Material Stability
Benefit from the stable physical and chemical characteristics of indium selenide, contributing to the longevity and robustness of integrated circuits.
Key Applications
Semiconductor Manufacturing
As a crucial material for creating high-performance chips, understanding the nuanced indium selenide CAS 12056-07-4 is vital for semiconductor production.
Thin-Film Devices
Indium selenide's properties make it an excellent candidate for thin-film applications, contributing to the development of advanced displays and optical sensors.
Advanced Electronics
The unique characteristics of advanced semiconductor materials indium selenide are driving advancements in various electronic devices, from consumer electronics to specialized industrial equipment.
Optoelectronic Components
Its semiconductor properties are integral to the fabrication of optoelectronic components, enabling new functionalities in lighting, communication, and sensing technologies.