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99.999 Purity Tellurium Te Specialty Alloy Component And Critical Additive For Electronic Devices

99.999 Purity Tellurium Te Specialty Alloy Component And Critical Additive For Electronic Devices

99.999 Purity Tellurium Te

Specialty Alloy Tellurium Te

Tellurium Rare Metals

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Product Details
CAS #:
13494-80-9
Molecular Formula:
Te
EC No.:
236-813-4
Purity:
99.9-99.999%
Appearance:
Solid
Melting Point:
449.51 °C
Boiling Point:
988 °C
Density:
6.24 G/cm³ (20 °C)
Refractive Index:
1.000991
Crystal Structure:
Hexagonal
Electrical Resistivity:
436,000 µΩ·cm (20 °C)
Electronegativity:
2.1 Paulings
Heat Of Fusion:
17.49 KJ/mol
Heat Of Vaporization:
114.1 KJ/mol
Specific Heat:
0.20 J/(g·K)
Thermal Conductivity:
1.97–3.0 W/(m·K)
Thermal Expansion:
18 µm/(m·K) (20 °C)
Young's Modulus:
43 GPa
Highlight:

99.999 Purity Tellurium Te

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Specialty Alloy Tellurium Te

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Tellurium Rare Metals

Payment & Shipping Terms
Minimum Order Quantity
500g
Packaging Details
0.5-1 kilogram per bottle, 50 kilograms per drum, 500 kilograms per pallet
Delivery Time
45-60 Workdays
Payment Terms
T/T
Supply Ability
5000 kg
Product Description

Tellurium (Te): Specialty Alloy Component and Critical Additive for Electronic Devices

 

‘Tellurium has two forms: one with a silvery-white metallic luster, and another as an amorphous black powder. It has a melting point of 452°C and boiling point of 1390°C, is brittle, and exhibits chemical properties similar to antimony. Tellurium dissolves in sulfuric acid, nitric acid, aqua regia, potassium cyanide, and potassium hydroxide, but is insoluble in water and carbon disulfide. When burned in air, it produces a blue flame and forms tellurium dioxide (TeO₂).

 

Applications

  1. Used in the production of special alloys.
  2. Used in manufacturing electronic components.

 

Product Series

Product

Product Code

Safety Data

Technical Data

Tellurium 99.99%

ET-TeM-01

Tellurium.pdf Tellurium Metal 99.99.pdf

Tellurium 99.999%

ET-TeM-02

Tellurium Metal 99.999.pdf

 

Health and Safety Information

Signal Word Danger
Hazard Statements H300-H330-H373-H413
Hazard Codes N/A
Precautionary Statements P260-P284-P301+P310-P320-P405-P501
Flash Point N/A
Risk Codes N/A
Safety Statements N/A
RTECS Number N/A
Transport Information NONH
WGK Germany 3
GHS Pictograms 99.999 Purity Tellurium Te Specialty Alloy Component And Critical Additive For Electronic Devices 099.999 Purity Tellurium Te Specialty Alloy Component And Critical Additive For Electronic Devices 1

 

 

Packaging Specifications

  • Standard packaging: 50 kg/drum, 500 kg/pallet, ton bags
  • Sample packaging: 500 g/bag, 1 kg/bottle

 

About Tellurium
Tellurium is extracted from tellurium-bearing anode slime obtained during copper electrolysis. The slime is roasted and treated with alkali to produce a crude tellurite solution (pH >10.8). Sodium sulfide is then added to precipitate lead, copper, silver, and iron as sulfides, which are removed by filtration. The filtrate is neutralized with hydrochloric acid to precipitate tellurium dioxide (TeO₂). After filtration, the TeO₂ is dissolved in 6 mol/L hydrochloric acid (tellurium concentration of 200 g/L) and heated to 90°C. Hydroxylamine hydrochloride (13 g per liter of solution) is added to precipitate and remove selenium impurities. Sulfur dioxide gas (washed with water and dilute sulfuric acid) is then bubbled through the solution to precipitate tellurium. The tellurium is filtered, washed, dried, and further purified via sodium polysulfide extraction to obtain the final tellurium product.

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