Samarium Carbonate Hydrate Nanopowder
Samarium Carbonate Hydrate Nanopowder
Samarium Carbonate Hydrate Nanopowder | |
Product No | NRE-5192 |
CAS | 38245-37-3 |
Purity | 99.9% |
Formula | Sm2(CO3)3•xH2O |
APS | <100 nm (can be customized) |
Color | White |
Molecular Weight | 498.76 g/mol |
Density | NA |
Melting Point | > 500 °C |
Boiling Point | NA |
Samarium Carbonate Hydrate Nanopowder
Samarium carbonate hydrate (Sm₂(CO₃)₃·xH₂O) is an inorganic compound composed of samarium, a rare-earth element, carbonate ions (CO₃²⁻), and water molecules that are incorporated into the crystal lattice. Samarium is a lanthanide metal that is used in various technological and industrial applications due to its unique electronic, magnetic, and optical properties. When samarium carbonate is processed into nanopowder form, its properties are enhanced, making it useful in several advanced technological fields.
High Surface Area: The nanopowder form of samarium carbonate hydrate exhibits a much larger surface area compared to bulk materials. This makes it more reactive and ideal for applications in catalysis, adsorption, and other surface-related processes.
Water Solubility: Due to the hydrate nature of samarium carbonate hydrate, the material may have enhanced solubility in certain aqueous environments, making it useful in solutions for chemical processes, drug delivery, or environmental applications.
Magnetic Properties: Samarium is known for its strong magnetic properties, particularly its use in magnets (such as samarium-cobalt magnets). These magnetic properties may be retained or even enhanced in nanopowder form, making it valuable in magnetic applications.
Optical and Luminescent Properties: Samarium ions are known for their ability to exhibit fluorescence and phosphorescence, particularly under UV light. This property can be useful in optoelectronic devices or luminescent applications, especially in nanoparticles where quantum effects are pronounced.
Chemical Reactivity: As a nanoparticle, samarium carbonate hydrate has increased chemical reactivity due to the higher proportion of atoms at the surface. This can make it effective in chemical reactions, including catalytic processes and material synthesis.
Thermal Stability: Samarium carbonate hydrate nanopowder generally has good thermal stability, making it suitable for high-temperature applications in various industries.