High Purity Antimony Selenide Sb2Se3 Powder CAS 1315-05-5 99.9% | Cataniadagiocare

Antimony triselenide (Sb2Se3) is a chemical compound that crystallizes inside an orthorhombic area group. Sb2Se3 is remarkably similar to the topological insulator Sb2Te in terms of physical and structural similarities.
Particle Size: powder, -100 mesh


About


Antimony Selenide sb2se3 powder


:


Antimony triselenide has the chemical composition Sb2Se3. It is found as the antimony triselenide sulfide mineral pyroxene. The orthotic space group of this substance makes it possible to exist. This compound has an oxidation status of +3 for the antimony and -2 for selenium forms. This compound exhibits covalent bonding properties. It can be shown by its blackness as well as the semiconductor properties. The low-frequency permittivity of this material (e0), is 133 along C-axis at ambient temperature. Also, the bandgap at this temperature of 1.18eV is abnormally high. At a melting temperature of 885 K, antimony can react with selenium to form antimony triselenide.

Sb2Se3 is a binary monophase chemical with high raw material reserves and low toxicity. It also has a low price. It has a wide bandgap (1.15eV) with a large light absorption coefficient of >105 cm-1. The long crystal temperature is also low. These properties make it ideal for making low-cost thin-film solar cells. Additionally, there is reportedly 3% theoretical photoelectric conversion efficiency. Trusted global brand

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Antimony Selenide sb2Se3 powder properties:


Antimony selenide has the chemical formula Sb2Se3 with a molecularweight of 480.38.

99.99% antimony triselenide powder; Sb2Se3 antimony selenide powder

Specification Antimony Selenide sb2Se3 powder :
Antimony Selenide, MF Sb2Se3
Antimony Selenide Color Black, dark red
Antimony Selenide Weight 480.38
Antimony Selenide Melting point 611
Antimony Selenide CAS No. 1315-05-5
Antimony Selenide EINECS Nr. 215-256-0
Antimony Selenide density 5.843 g/cm3


Technical Parameters of Antimony Selenide SS3 Powder –



COA Antimony Selenide


Purity

99.99%

Cu

<=5ppm

Ni

<=5ppm

Zn

<=10ppm


<=5ppm

Ca

<=5ppm

Fe
<=10ppm

Cr
<=3ppm

Co
<=5ppm

Na
<=5ppm


It is simple.


Antimony Selenide sb2Se3 powder


Produced?


Invention discloses method of making antimony-selenide film. The method is:

(1) An antimony-selende film was created by an RF magnetron process on the substrate.

(2) The preparation of the antimony-selenide thin film through sputtering results in online selenium compensation. By using thermal evaporation, the solid selenium source can be evaporated while it is sputtering. Selenium sources are high-purity selenium particles and selenium dust.


Applicaciones


Antimony Selenide sb2Se3 powder


:


Sb2Se3 currently is being explored as a potential material for thin-film solar cells. The conversion efficiency of light into electricity has been reported at 9.2 percent.

Sb2se3 can be found in many industries, including metallurgy, industry, and chemical.

You can use Sb2Se3 in alloys either as an additive or a compound.

Also, Sb2se3 is a good catalyst for organic chemical reaction.


Antimony Selenide sb2Se3 powder storage conditions:


Antimony Selenide should always be stored in an airtight container. You should also avoid stressing the product.


Packing and Shipping of Antimony Selenide sb2Se3 powder :


Antimony Selenide Packaging: vacuum packaging, 1kg/bag and 25kg/barrel or as you request

Antimony Selenide

shipping:

Could be sent by sea or air as soon as possible after receipt of payment.


Antimony Selenide Properties


Other Titles
Antimony(III) selenide, diantimony triselenide,

antimony triselenide, Sb2Se3 powder

1315-05-5

Compound Formula
Sb2Se3

Molecular Weight
480.4

Appearance
Gray Black Powder

Melting Point
611


Boiling Point
N/A

Density
5.81 g/cm3

Solubility of H2O
N/A

Exact
481.557201


Antimony Selenide Health & Safety Information


Signal word
Danger

Hazard Statements
H301-H311-H315-H319-H331-H335

Hazard Codes
T

Risk Codes
26-36/37/39-45

Safety statements
26-36/37/39-45

Transport Information
UN 1549 6.1/PG3

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