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New conductive material nickel nanowires NiNWs Hongwu Nickel nanowires have a wide range of potential applications in electronic materials, catalysis, polymers, magnetic storage ultra-high density recording materials, sensors and self-lubricating materials. more
Transparent Colloidal Ag Antibacterial Nano Silver Colloid Ag (Antibacterial Nano Silver Colloid) has been well known antibacterial, antiviral and antifungal properties are enhanced by small particle size and large surface area. more
Nano silica particles used in epoxy resin, superhydrophobic coating nano silica powder Nano silica particles, 20-30nm, 99.8% purity, widely used in exposy resin and superhydrophobic coating. more
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Thermochromism refers to the phenomenon where a material undergoes color changes under temperature changes. This change is usually caused by changes in the electronic or molecular structure of the material. Its application principle mainly involves t...
Superfine Boron Nanoparticles is available for 100-200nm with 99%. Amorphous B Powders can be used in various fields. Mircon size 1-2um B powder is also supplied. Quick delivery, competitive price of amorphous Boron particles are offered by Hongwu Nano.
product origin:
CHINAitem no.:
A220color:
BrownSuperfine Amorphous Boron Nanoparticles
Spec: 100-200nm, 1-2um
Purity: 99%
Amorphous type.
Application for boron nanoparticles:
Boron
powders due to very hard, it is often used in place of the diamond
cutting tool or the manufacture of bricks, adding a small amount of
boron in the metal refining process, on the one hand as a deoxidizing
agent at a high temperature to prevent oxidation of the metal, forming
an alloy on the other hand, to improve the mechanical properties of the
metal.
Breif introduction of Boron element:
Boron has several allotropes, and amorphous boron is also called elemental boron and monomer boron. It's insoluble in water, hydrochloric acid, ethanol, ether. It
is soluble in cold concentrated alkali solution and decomposes into
hydrogen, which is oxidized to boric acid by concentrated nitric acid
and concentrated sulfuric acid. At
high temperature, boron can interact with oxygen, nitrogen, sulfur,
halogen and carbon, and boron can also directly combine with many metals
to form borides. The
reaction of boron with organic compounds can generate compounds in
which boron is directly linked to carbon or compounds in which oxygen
exists between boron and carbon.
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