Lithium Gallium Oxide (GaLiO2) Description
Lithium Gallium Oxide (GaLiO2) (CAS: 944251-30-3) is a crystalline solid used as a semiconductor and in photo optic applications. Lithium Gallium Oxide (GaLiO2) belongs to Scintillators, which are materials used in various radiation detection applications, often in single crystal form, and doped with an activator, like cerium, to promote scintillation.
Lithium Gallium Oxide (GaLiO2) Specifications
CAS Number
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944251-30-3
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Molecular formula
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GaLiO2
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Molecular weight
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108.66
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Melting Point
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>400 °C
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Density
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4.0187 g/cm3
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Appearance
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White powder
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Lithium Gallium Oxide (GaLiO2) Applications
Lithium Gallium Oxide (LiGaO2) is a wide-band-gap semiconductor with an optical gap greater than 5.3 eV. When alloyed with ZnO, this material offers broad functionality for optical devices that generate, detect, and process light across much of the ultraviolet spectral region. The crystal symmetry (point group mm2) and refractive indices of LiGaO2 show that it can be phase-matched for second‐harmonic generation (SHG) of laser fundamentals in the near-infrared.
FAQs
1. What are the main applications of Lithium Gallium Oxide (GaLiO2)?
Lithium Gallium Oxide (GaLiO2) is mainly used in:
Semiconductor devices
Photo-optic applications
Radiation detection, especially in scintillation detectors
High-performance scintillator materials for various radiation detection technologies
2. What are the key properties of Lithium Gallium Oxide (GaLiO2)?
Key properties of Lithium Gallium Oxide (GaLiO2) include:
Crystalline solid with high thermal and chemical stability
Strong scintillation properties when doped with activators such as cerium
High energy bandgap suitable for semiconductor applications
Effective for use in radiation detection due to its scintillating capabilities
3. What industries use Lithium Gallium Oxide (GaLiO2)?
Lithium Gallium Oxide (GaLiO2) is used in industries such as:
Semiconductor manufacturing
Radiation detection and nuclear applications
Photo-optic systems and research
Medical imaging (especially in PET or gamma-ray detection)