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Product Infomation
Product Name Magnesium Oxide (MgO) Microspheres, 1 μm
Catalog Number IMM-MO-013
Physical Specs 1 μm
Description Magnesium Oxide (MgO) Microspheres are high-purity spherical magnesia particles with high refractoriness, insulation and adsorption capacity, suitable for refractory fillers, adsorbent materials and ceramic composite modification.
Applications Adsorbents and catalysts: Due to its large specific surface area, nano-magnesium oxide is a key raw material for the preparation of high-performance fine inorganic materials, electronic components, inks, and adsorbents for harmful gases; High-performance ceramics: Nano-magnesium oxide exhibits excellent sintering properties. It enables low-temperature sintering without the need for sintering aids, allowing for the production of highly dense, fine-grained ceramics or multifunctional magnesium oxide films, which hold promise for development into cutting-edge materials for harsh conditions such as high temperatures and high corrosion; Microwave-absorbing materials: Due to its high reactivity and dispersibility, nano-magnesium oxide readily forms composites with polymers or other materials. Such composites exhibit excellent microwave absorption properties without compromising the strength or toughness of the base materials; furthermore, the addition of fibrous magnesium oxide provides reinforcing effects; Fillers for coatings, plastics, and rubber: Due to its high dispersibility, nano-magnesium oxide can serve as a filler for paints, paper, and cosmetics, as well as a filler and reinforcing agent for plastics and rubber, and as an auxiliary material for various electronic materials; Flame-retardant materials: Nanoscale magnesium oxide possesses excellent flame-retardant properties and can be combined with wood chips and shavings to produce lightweight, sound-insulating, heat-insulating, and fire-resistant fiberboards, as well as other refractory materials and metal ceramics. Fire-retardant coatings: With an addition rate of 0.3–3%, it delivers excellent results; nano-composite ceramic additives produced by sintering with nano-alumina and nano-titanium dioxide can replace the precious metal nickel in the preparation of heat-resistant steel.
Features The product has a small particle size and large specific surface area. It possesses optical, electrical, magnetic, and other chemical properties distinct from those of the parent material. It is characterized by high hardness, high purity, and a high melting point; It exhibits good suspension properties in water, facilitating coating. It has a low hydration rate and possesses some binding properties;
Particle Size 1 μm
Specific Surface Area 18 m²/g
Density 3.6 g/cm³
Purity 99.9%
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