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Catalog Number:
35938
CAS Number:
13760-80-0
Fluoruro de iterbio (III) anhidro
Purity:
≥99,9 % (REO)
Hazmat
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Product Information

Ytterbium(III) fluoride anhydrous is a highly versatile compound known for its unique properties and applications in various fields. This white crystalline solid is primarily utilized in the production of optical materials, particularly in the manufacture of high-performance lasers and phosphors. Its exceptional luminescent properties make it an ideal choice for applications in solid-state lasers, where it contributes to efficient energy transfer and enhanced performance. Additionally, Ytterbium(III) fluoride is employed in the field of electronics, particularly in the development of advanced materials for semiconductors and in the synthesis of other rare earth compounds.

Researchers and industry professionals appreciate Ytterbium(III) fluoride anhydrous for its stability and compatibility with other materials, which allows for seamless integration into various formulations. Its unique trifluoride structure enhances its reactivity, making it a valuable component in chemical synthesis and catalysis. With its growing importance in cutting-edge technologies, Ytterbium(III) fluoride anhydrous stands out as a crucial material for innovation in both research and industrial applications.

CAS Number
13760-80-0
Purity
≥99,9 % (REO)
Molecular Formula
YbF3
Molecular Weight
230.04
PubChem ID
83711
Melting Point
1157 ?C
Density
8.2
Appearance
Polvo blanco
Boiling Point
2200 ?C
Conditions
Tienda en RT
General Information
CAS Number
13760-80-0
Purity
≥99,9 % (REO)
Molecular Formula
YbF3
Molecular Weight
230.04
PubChem ID
83711
Melting Point
1157 ?C
Density
8.2
Appearance
Polvo blanco
Boiling Point
2200 ?C
Conditions
Tienda en RT
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Ytterbium(III) fluoride anhydrous is widely utilized in research focused on:

  • Optoelectronics: This compound is used in the production of high-performance optical materials, including lasers and fiber optics, enhancing signal transmission and efficiency.
  • Medical Imaging: Its unique properties make it valuable in the development of contrast agents for MRI scans, improving the clarity and detail of images.
  • Materials Science: Employed in the synthesis of advanced ceramics and glass, it contributes to materials with superior thermal and mechanical properties.
  • Quantum Computing: Ytterbium(III) fluoride is explored for its potential in quantum bits (qubits), offering advantages in coherence times and operational stability.
  • Research in Solid-State Chemistry: It serves as a precursor for various ytterbium-containing compounds, facilitating studies on their electronic and magnetic properties.

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