Aluminum Oxide (Al2O3) Micron PowderPurity: 99.9%, Size: 50-100 µm Alumina is a standout amongst the most cost effective and broadly utilized material in the group of engineering ceramics. The raw materials from which this ceramic is made are promptly accessible and sensibly estimated in p..
Aluminum Tab for Pouch Li-ion CellWidth: 4 mm, Length: 57 mmApplications and Description:Aluminum Tab for Pouch Li-ion Cell, with a purity greater than 99.99%, these Aluminum Tabs are commonly used as the Positive Terminal of pouch Li-ion battery cells.Technical Properties:Purit..
Antibacterial Nanopowder/NanoparticlesSize: 100 nmTechnical Properties:AppearanceWhite PowderWhiteness98Content of Ag (%)3.45Bulk Density (g/ml)0.53pH5.5-6.0Specific Surface Area (m2/g)5.0Loss of Weight in Drying (%)0.5Loss of Weight on Ignition (%)1.67Average Particle Size (D50) (nm)100Content..
AZ91 Magnesium Alloy PowderPurity: 99.95%, Size: 325 mesh Magnesium Micro Powder can be used for preparation of pressed and bonded sputtering targets and in Chemical Vapor Deposition Magnesium Micro Powder 325 mesh can be used for Physical Vapor Deposition Magnesium Micro Po..
Barium Ferrite (BaFe12O19) Micron PowderPurity: 99.9+%, Size: 1-3 µm Applications:* Barium Ferrite chemical symbol is BaFe12O19* Barium element is a Block S, Period 6 element, İron is a Block D, Period 4 element and Oxygen is a Block P, Preriod 2 element* Barium Ferrite density i..
Boron Carbide (B4C) Micron PowderPurity: 99.95%, Size: < 10 µmApplications: Boron carbide powder is one of the most stable and hard materials. It does not react with acid or alkali solutions. It is used as an abrasive in polishing and lapping applications, and also as a loose abras..
Boron Carbide (B4C) Micron PowderPurity: 99.95%, Size: 325 meshApplications: Boron carbide powder is one of the most stable and hard materials. It does not react with acid or alkali solutions. It is used as an abrasive in polishing and lapping applications, and also as a loose abrasive in ..
Boron Doped GrapheneBoron-doped Graphene (BG) is a novel nanomaterial based on graphene, a single sheet of carbon atoms in a hexagonal lattice. The addition of boron atom impurities into pure graphene increases the activation region on its surface, enhances its catalytic ability, accelerates redox r..