Skip to main content

Aluminum Oxide Nanoparticles


  • Aluminum Oxide Nanoparticles can be used for producing synthetic sapphire with the method of thermal melting techniques.
  • Aluminum Oxide Nanoparticles can be made into microporous spherical structure or honeycomb structure of catalytic materials.
  • These kinds of structures which are made of Aluminum Oxide Nanoparticles can be excellent catalyst carriers. If Aluminum Oxide Nanoparticles used as industrial catalysts, they will be the main materials for petroleum refining, petrochemical and automotive exhaust purification

   Aluminum Oxide Nanoparticles can be used to produce:

- Transparent ceramics: high-pressure sodium lamps, EP-ROM window

- Cosmetic filler

- Single crystal, ruby, sapphire, sapphire, yttrium aluminum garnet

- High-strength aluminum oxide ceramic, C substrate, packaging materials, cutting tools, high purity crucible, winding     axle, bombarding the target, furnace tubes

   Aluminum Oxide Nanoparticles are also can be used to produce:

- Polishing materials, glass products, metal products, semiconductor materials, plastic, tape, grinding belt

- Paint, rubber, plastic wear-resistant reinforcement, advanced waterproof material

- Vapor deposition materials, fluorescent materials, special glass, composite materials and resins

- Catalyst, catalyst carrier, analytical reagent

- Aerospace aircraft wing leading edge.

https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...
https://nanografi.com/nanoparticles/al2o3-aluminiu...

https://nanografi.com/blog/aluminum-oxide-nanoparticles/


Comments

Popular posts from this blog

Molybdenum Trioxide Nanoparticles/Nanopowder and Applications

General Information about Molybdenum Trioxide                                                     Molybdenum trioxide is chemical compound with the formula MoO3. Its chief application is as an oxidation catalyst and as a raw material for the production of molybdenum metal.  Molybdenum Trioxide  is a very light blue powder. Molybdenum Trioxide Nanoparticles/Nanopowder and Their Applications                                                    Like many  nanoparticles/nanopowder , Molybdenum Trioxide nanoparticles/nanopowder are used as catalysts. These catalysis reactions include hydrogenation catalysis and cracking catalysis. Molybdenum Trioxide nanoparticles/  nanopowder are useful for...

Cadmium Sulfide Nanopowder and Its Applications

Cadmium sulfide is the inorganic compound with the formula CdS. Cadmium sulfide is a yellow solid. It occurs in nature with two different crystal structures as the rare minerals greenockite and hawleyite. As a compound that is easy to isolate and purify, cadmium sulfide the principal source of cadmium for all commercial applications. Its vivid yellow color led to its adoption as a pigment for the yellow paint "cadmium yellow" in the 18th century. Cadmium Sulfide Nano Powder, CdS (99.9+%, 20 nm)  shows unique physical, chemical and structural properties from the bulk. The melting point, electronic absorption spectra, band gap energy crystal structure, and other properties of cadmium sulfide nanoparticles are affected by size. Thus, cadmium sulfide on the whole is an attractive system for practicing synthetic chemistry for nanocrystals and for understanding the chemistry, growth history of nanomaterials and also for various technical applications. Colloidal dispersions of ...

Carbon Nanotubes Doped with Graphene Nanopowder and Applications

Carbon nanotubes and graphene are different forms of carbon atom based materials. They have different properties and can be used in various applications. But what happens if we use them as a hybrid structure? The excellent mechanical, physical, and chemical properties of low-dimensional carbon materials like graphene and carbon nanotube have enabled them as promising building blocks for three-dimensional nanoarchitectures. In this regard, extensive interests have been attracted to synthesize graphene and carbon nanotube hybrid structures. Earlier works suggested that  Carbon Nanotubes Doped with Graphene Nanopowder (52 wt% Graphene )  is a promising solution for quick energy dissipation, which could enhance interface thermal conductivity of the ‘building blocks’ for future nanoscale mechanical and electrical devices. In the electricity perspective, it is found that ‘CNT pillared-graphene’ system would extend the excellent electrical conductivity of graphene and nanotube to ...