Skip to main content

Iron Oxide Nanoparticles/Nanopowder and Applications

General Description of Iron Oxide Nanoparticles/Nanopowder
                                          
Iron oxide is a chemical compound composed of iron and oxygen.
Iron oxide is widespread in nature, play an important role in many geological and biological processes, and is widely used by humans, e.g., as iron ores, pigments, catalysts, in thermite and hemoglobin. Common rust is a form of Iron Oxide. Iron oxides are widely used as inexpensive, durable pigments in paints, coatings and colored concretes.
Applications of Iron Oxide Nanoparticles/Nanopowder
Like many ferrous nanomaterials, the various forms of Iron Oxide nanoparticles/nanopowder are of particular use in the production of ferrofluids and magnetically active fluids for a variety of applications. Iron oxide nanoparticles/ nanopowder are widely used as a composite material in plastics, rubber, alloys, and wear-resistant materials. In lithium batteries and lithium iron phosphate batteries Iron Oxide nanoparticles/nanopowder are also used. For magnetic coating and coatings designed to absorb EM-waves Iron Oxide nanoparticles/nanopowder can be used. Iron Oxide nanoparticles/nanopowder are suitable for purification related applications like in biological and waste water contexts. Iron oxide nanoparticles/nanopowder play crucial rules in dozens of other magnetic devices and applications, such as magnetically controlled drug delivery, medical imaging, cell separation, and refrigeration.
Technical Properties of Our Iron Oxide (Fe2O3) gamma, 18-38 nm, Purity 99.55% Product 
                                     
Purity %99.55
Colorred brown
AVERAGE PARTICLE SIZE (nm):18-38
Morphologyspherical
SPECIFIC SURFACE AREA (m2/g):>55

To buy Iron Oxide (Fe2O3), gamma, 18-38 nm, Purity 99.55% please click the link given below:
Technical Properties of Our Iron Oxide (Fe2O3) gamma, 18nm, High Purity 99.55+% Product
Purity %99.55+
Colorred brown
AVERAGE PARTICLE SIZE (nm):18
Morphologyspherical
SPECIFIC SURFACE AREA (m2/g):>75

To buy Iron Oxide (Fe2O3), gamma, 18nm, High Purity 99.55+% please click the link given below:
Technical Properties of Our Iron Oxide (Fe2O3) Nanoparticles/Nanopowder, alpha, 28nm, High Purity 99.6+% Product
Purity %99.6+
Colorred brown
AVERAGE PARTICLE SIZE (nm):28
Morphologyspherical
SPECIFIC SURFACE AREA (m2/g):>55
True Density (g/cm3)5,4

To buy Iron Oxide (Fe2O3) Nanoparticles/Nanopowder, alpha, 28 nm, High Purity 99.6+% please click the link given below:

Comments

Popular posts from this blog

Titanium Carbide Powders and Applications

Titanium carbide which has the chemical formula of TiC attracted great interest for many structural applications due to its extremely high melting temperature, high hardness, high chemical resistance and good electrical conductivity. Therefore titanium carbide can be used in cutting tools, grinding wheels, wear-resistant coatings, high temperature heat exchangers, magnetic recording heads, turbine engine seals, and bullet-proof vests, etc. In addition, a promising field of application comprises plasma and flame spraying processes in air, where titanium carbide-based powders show high-phase stability. TiC(Titanium Carbide Powder) (325 mesh, 99,9+%)  can also be used in biomedical implant devices. Materials used for biomedical implant devices must satisfy a variety of property demands, which are often mutually exclusive. Further, different parts of a device demand different material properties. These factors often make it difficult to manufacture a medical device using a...

Hydroxyapatite Nanopowders and Their Applications

Hydroxyapatite, is a naturally occurring mineral form of calcium apatite with the formula Ca 5 (PO 4 ) 3 (OH). Pure hydroxyapatite powder is white. Naturally occurring apatites can, however, also have brown, yellow, or green colorations, comparable to the discolorations of dental fluorosis. Hydroxyapatite Nanopowder/Nanoparticles (50 nm, 99.95+%)  has been widely used as a biocompatible ceramic in many areas of medicine, but mainly for contact with bone tissue, due to its resemblance to mineral bone. In mammals, the skeleton presents a carbonated and partially substituted apatite, based on nanocrystal aggregates, and associated with collagen, building up 3-D structures present in various bone tissue conformations like trabecular or cancellous bone. There has been growing interest in developing bioactive synthetic ceramics that could closely mimic natural apatite characteristics. As mentioned before,  Hydroxyapatite Nanopowder  is the main inorganic constituent of bon...

New Way of Deaf-Mute Communication with 3D Graphene

Image retrieved from: http://blogs.rsc.org/cc/2016/09/01/3d-graphene-adds-dimension-to-deaf%E2%80%93mute-communication/ Chinese scientists have developed wearable electronic device with conductive 3D graphene structure to translate sign language into written text. This technology can be applied by injecting graphene ink from a syringe under printed electronic field. For medical field, such as adhesive patches which determine heart, brain signal and neural activity, wearable and bio-integrated medical devices are very important. Due to noticeable properties of cast graphene, for example a 2D honeycomb lattice, excellent mechanical and electrical behaviors, Graphene has an important material in warble technology. However, it is difficult to preserve advantages of Graphene material in a 3D material which has an information about forces from every angle. Yanlin Song  and co-workers at the University of the Chinese Academy of Sciences, Beijing, and Shenyang Jianzhu University...