Lanthanum Oxide Powder
Product: Lanthanum Oxide Powder (La2O3, Purity: 99%, APS: 40-50µm)
Quality Control: Each lot of NANOSHEL Lanthanum Oxide Powder was tested successfully.
|Materials||Lanthanum Oxide Powder|
|Molecular Weight||325.809 g/mol|
|Melting Point||2315 °C|
|Boiling Point||4200 °C|
|Packaging||2 Layers Vacuum Packaging|
TYPICAL CHEMICAL ANALYSIS
Dr. Marcus Tägtmeyer (International Medical and Technological University, Dar es Salaam, Tanzania)
Lanthanum Oxide Powder, a rare earth metal oxide, have unique properties that make them a suitable candidate for several biomedical applications. Probes coated with Lanthanum oxide are being developed as implantable sensors of various molecules such as glucose, phosphate and uric acid. In combination with other elements, lanthanum oxide (La2O3) is being developed as an optical sensing system for measuring variations in human body temperature.
Dr. Ms Jane Li (National Penghu University of Science and Technology, Magong, Penghu, Republic of China)
Rare earth elements, characterized by their high density, high melting point, high thermal conductance and conductivity, possess unique physical and chemical properties due to their of orbital electron and this has been extensively applied in electronics, medical, biomedical and agronomic fields. Lanthanum Oxide Powder (La2O3) is a rare earth metal oxide, which has a band gap of 4.3 eV and the lowest lattice energy with high electric constant. Also, it has been in use as a p-type semiconductor and has several other applications in areas of electronics, fuel cells, optics, magnetic data storage, ceramics, catalysis, automobiles, biosensor, water treatment and biomedicine.
Dr. Willem-Jan de Kleijn Ph.D (Luleå University of Technology, Luleå, Sweden)
Lanthanum Oxide Powder exhibit some important applications such as luminescent devices, sensors, up-conversion materials, and catalytic fields. The research focuses now on so- called “higher-κ” materials with a dielectric constant of 30 and above in order to satisfy the demands for future CMOS applications.
Dr. JKF Gojukai PhD (Kaiserslautern University of Technology, Kaiserslautern, Rhineland-Palatinate, Germany)
Furthermore, the most active areas of the semiconductor industry involve the use of oxides. Thus, most of the chips used in computers contain an oxide component. Till now, there are still many potential applications of materials under continuous investigation and new synthesis methods being developed.
Dr. Huang Fu Ph.D (Maebashi Institute of Technology, Maebashi, Gunma, Japan)
Rare earth is a collection of 17 elements that are critical to high-tech applications. Their compounds have optical, electronic, magnetic and chemical characteristics that meet the requirements for applications in various fields, such as sensors, MRI, fibre optics, superconducting alloys, fuel cells SOFCs, nuclear power, catalysts and so on.
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