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Nano-Ferrosoferric oxide Fe3O4 have a special application in biomedicine

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What is nano Ferrosoferric oxid? Iron (II and III) Oxide is also known by the name Fe3O4. Black Fe3O4 consists of a mixed-valence iron oxide with a meltingpoint of 1597. It has a densities of 5,18g/cm3. It is insoluble but soluble when dissolved in acid. It is found in nature as magnetite, with a strong sub-magnetite. At room temperature it has a high conductivity.
Ferromagnetic or ferromagnetic substances undergo a second-order transition into paramagnetic compounds above the Curie temperature. Fe3O4’s Curie Temperature is 585.
The powder of nano-ferrosoferric (Fe3O4) oxide is magnetic and moves in a directional manner when exposed to an external magnetic field. Its particles are superparamagnetic within a specific range and it can generate heat in the presence of an external alternating magnetic field. It is widely used because its chemical properties are stable.
What are magnetic Nanoparticles?
Magnetic Nanoparticles/Magnetic Nanoparticles (MNPs) are new materials with rapid development and high application value in recent years. The application of magnetic nanoparticles has increased in recent years.
The nano-sized ferro-ferric oxide Fe3O4 exhibits special magnetic properties that are not found in bulk materials. These magnetic properties are due to the Nano-particles’ small size, surface, quantum size, and macroscopic tunneling effects. This makes it a very useful material in industries, biomedicine and other fields.
In biomedicine, nano-Ferrosoferricoxide Fe3O4 has many applications.

Magnetic polymer nanospheres (also known by the name immune magnetic microspheres), is composed of magnetic particles and polymer scaffolds for preparation of biomedical material. The polymer materials used include silanes, polyethylenes, polystyrenes, poly(acrylic acids, starch dextrins, gelatins, albumins, ethylcelluloses, etc.). Skeleton materials are mostly inorganic with magnetic.
Fe3O4 has stable properties, is strong, non-toxic, and can be used for a variety of biomedical applications, including magnetic separation technology, tumor heat treatment, cell markers, and magnetic resonance imaging. The magnetic hyperthermia treatment is a hotspot for domestic research, particularly in the treatment and prevention of cancer-oriented drug carrier and tumor.
Fe3O4 ferroferric oxide supplier
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