Home » Lithium Fluoride Nanoparticles (LiF, 99.9%, 80-100nm, Technical Grade)

OPTICAL FLUORIDES

Stock No. CAS MSDS Specification COA
NS6130-12-000768 7789-24-4 Specification pdf

Lithium Fluoride Nanoparticles

Product: Lithium Fluoride Nanoparticles (LiF, 99.9%, 80-100nm, Technical Grade)

NS000768

Particles Size Analysis - LiF Nanopowder

Particles Size Analysis - LiF Nanopowder

 
Product Lithium Fluoride Nanoparticles
Stock No. NS6130-12-000768
CAS 7789-24-4 Confirm
APS 80-100nm Confirm
Purity 99.9% Confirm
Molecular Formula LiF Confirm
Molecular Weight 25.94 g/mol Confirm
Form Crystalline Powder Confirm
Colour White Confirm
Density 2.6 g/ccm (at 20 °C) Confirm
Melting Point 870 °C Confirm
Boiling Point 1681 °C Confirm
Solubility 0.29 g LiF in 100 g water at 20 °C
Quality Control Each lot of Lithium Fluoride Nanoparticles was tested successfully.
Main Inspect Verifier Manager QC

Expert Reviews

Dr. Marcus Tägtmeyer, (International Medical and Technological University, Dar es Salaam, Tanzania)

Lithium Fluoride Nanoparticles: Optical Crystals such as CaF2, BaF2, MgF2, LiF, Nacl, KCL, KBR are widely used in IR optics and UV optics. High transparency and low loss optical windows, prisms, lenses, acromatic lenses and parallel planes have been fabricated in these optical materials. These crystals are applied to entire optical wavelength range from vacuum ultraviolet (0.11um) to far infrared (40um).


Dr. Ms Jane Li, (National Penghu University of Science and Technology, Magong, Penghu,  Republic of China)

Lithium Fluoride Nanoparticles: Some doped fluoride crystals like LiF:Mg,Ti or CaF2: Dy are radiation detectors and efficient TL dosimeters mainly for higher energy radiation. Most solidstate dosimeters are based on effects of thermoluminescence (TL) and more recently also on methods of optically stimulated luminescence (OSL) and photo-transferred TL (PTTL).


Dr. Willem-Jan de Kleijn Ph.D, (Luleå University of Technology, Luleå, Sweden)

Lithium Fluoride Nanoparticles: It should also be noted that the application of monochromatic VUV radiation enables the evaluation of the photon energy which is most efficient for the formation of defects and the excitation of TL.


Lithium Fluoride Nanopowder

Lithium Fluoride Nanopowder


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