Dysprosium Evaporation Materials Description
Dysprosium (Dy)-Evaporation materials are dysprosium-containing substances used in the deposition of thin films by physical vapour deposition (PVD), for example by thermal evaporation. These materials are used to fabricate thin films for various applications, including electronics, optics and coatings.
Dysprosium (Dy)-Evaporation materials are produced with a high purity level to ensure the quality and performance of the deposited thin films. A high purity level is essential to avoid contaminants that could affect the thin film properties.

Dysprosium Evaporation Materials Specifications
Material
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Dysprosium
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Appearance
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Silvery white, metallic
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Melting point (°C)
|
1 412
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Thermal Conductivity
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11 W/m.K
|
Coefficient of Thermal Expansion
|
9.9 x 10-6/K
|
Theoretical Density (g/cc)
|
8.55
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Dysprosium Evaporation Materials Applications
1. Magnetic materials: They are used as a component in rare-earth magnetic materials for the fabrication of permanent magnets, magnetic recording media and magnetic sensors.
2. Semiconductor devices: They are used as dopant or substrate materials in the growth and production of semiconductor components.
3. Nuclear applications: In nuclear reactors, they are employed to control the nuclear fission process and to improve the efficiency and stability of the reactors.
4. Optical coatings: They are used in the production of thin films for optical components, including coated mirrors, optical filters and lenses.
5. Magnetic recording media: They are employed as components in magnetic recording media, including magnetic tapes, hard drives and magneto-optical storage devices.
6. Material research: They are used as test materials and reference standards to examine the properties and potential applications of rare-earth materials, thereby supporting the advancement of materials science.
Packaging of Dysprosium Evaporation Materials
Our Dysprosium evaporation materials are handled with care during storage and transportation in order to maintain the product quality in its original state.