Lanthanum Hexaboride LaB6 Nanoparticles
Lanthanum Hexaboride LaB6 Nanoparticles
Lanthanum hexaboride, purple powder, density 2.61g/cm3, melting point 2210 °C, decomposition above the melting point. Insoluble in water and acid at room temperature. Due to the characteristics of high melting point and high thermal electron radiation performance, it can replace high melting point metals and alloys in nuclear fusion reactors and thermoelectronic power generation.
Index
Product number | D50(nm) | Purity(%) | Specific surface area (m2/g) | Bulk density (g/cm3) | Density(g/cm3) | Polymorph | Color |
LaB6-01 | 100 | >99.9 | 21.46 | 0.49 | 4.7 | Cube | Purple |
LaB6-02 | 1000 | >99.9 | 11.77 | 0.89 | 4.7 | Cube | Purple |
Application direction
1. It has a wide range of uses, and has been successfully used in more than 20 military and high-tech fields such as radar, aerospace, electronic industry, instrumentation, medical equipment, home appliance metallurgy, environmental protection, etc. In particular, lanthanum hexaboride single crystal is a material for making high-power electron tubes, magnetics, electron beams, ion beams, and accelerator cathodes;
2. Nanoscale lanthanum boride is a coating applied to the surface of polyethylene film to isolate the infrared rays of sunlight. Nanoscale lanthanum boride absorbs infrared light without absorbing much visible light. According to recent studies, the resonance peak of nanoscale lanthanum boride can reach 1000 nanometers, and the absorption wavelength is between 750 and 1300.
3. Nanoscale lanthanum boride is a material for nano-coating of window glass. Coatings designed for hot climates allow visible light to pass through the glass, but prevent infrared rays from entering. In cold climates, nanocoatings can make more efficient use of light and heat energy by preventing light and heat from being radiated back to the outdoors.
Storage conditions
This product should be sealed and stored in a dry and cool environment, not suitable for long-term exposure to the air, to prevent agglomeration by moisture, affecting the dispersion performance and use effect, and should avoid heavy pressure, do not contact with oxidants, and be transported according to ordinary goods.
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