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Sulphur (S) Nanopowder / Nanoparticles Dispersed in Ethanol
Sulphur (S) Nanopowder / Nanoparticles Dispersed in Ethanol (S, 47nm, 10wt% in Ethanol)
October 4, 2017
Conductive Carbon Black Nanoparticles Water
Conductive Carbon Black Nanoparticles Water Dispersion (C, 150 nm, 35wt%, Plant as Raw Materials)
October 4, 2017
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Bismuth Oxide Nanoparticles 20wt% Ethanol Dispersion (Bi2O3, 99.9%, 80nm)


Above 710 oC, melting bismuth oxide can erode or dissolve metal oxides. The main purpose: the electronics industry; pressure-sensitive resistors; Capacitance of major doping materials; medicine; artificial bone imaging; glass; Bismuth oxide in ceramics can increase the index of refraction of glass

Bismuth Oxide Nanoparticles 20wt% Ethanol Dispersion (Bi2O3, 99.9%, 80nm)

Bismuth Oxide Nanoparticles 20wt% Ethanol Dispersion (Bi2O3, 99.9%, 80nm)
Product No. CAS No. Formula Molecular Weight APS Purity Color Morphology
NRE-2097 NA Bi2O3 NA 80nm 99.9% Yellow spherical
Concentration NA
Solvent NA
pH NA
Bismuth Oxide Nanoparticles (Bi2O3) Certificate of Analysis

Bi2O3

Pb

Fe

Cu

As

Acid-insoluble

≥99.9

0.001

0.001

0.001

0.001

0.005


Bismuth Oxide Nanoparticles (Bi2O3) Applications:

Above 710 oC, melting bismuth oxide can erode or dissolve metal oxides. The main purpose: the electronics industry; pressure-sensitive resistors; Capacitance of major doping materials; medicine; artificial bone imaging; glass; Bismuth oxide in ceramics can increase the index of refraction of glass and significantly improve the performance of the ceramic material. It is the best substitute of “Lead Glaze”. Also, Catalysts; Disinfectants; Fireproofing papers and polymers; High nonlinear susceptibility materials; Magnets; Rubber; Solid electrolytes; Substitute for lead oxide in glass or porcelain; Vulcanization.

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