High Purity Tin Telluride SnTe Powder Cas 12040-02-7,99.99% | 3pdm


Dec 30, 2022

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Tin Telluride IV-VI is a compound semiconductor material made up of VIA and IVA elements. SnTe forms the molecular formula. Size of particles: -80mesh, or -100mesh Purity: 99.99% Tin telluride and SnTe powder Tin Telluride IV-VI is a compound semiconductor material made up of VIA and TE elements. The molecular form is SNTE. The ban on bandwidth is 0.60 electronvolts, which corresponds to a transmitting mode. Tin Telluride is an example of a semiconductor material. The sodium chloride structure of ionic crystals has a specific covalent bond element. Density 6.48g / cm3, melting 780 degrees Celsius. For making an Infrared Detector, it can be made by an epitaxial or straight pull process. Tin Telluride often has a lead tiny-lisuride which is alloyed. Tin Telluride (external silicon) is formed by tin-air space. Tin Telluride comes in three forms. Low temperatures have a lower concentration of Tin Telluride’s aperture carrier than 1.5 10 20 cm-3. This phase is sometimes referred to by the SNET, or the diamond phase. At ambient temperature, and at atmospheric pressure, the NaCl sample samples contain tin Telluride, which is called -SNE. While the SNTE is converted into –SNTE and orthogonal, PNMA spatial group, and ­SNTE phases are all present in NaCl samples, The phase shift is marked by an 11 percent increase, and the resistance of -SNET goes up by 360%. Teti is thermoelectric. Teti is a thermoelectric material. Features of Tin telluride snTe powder Maintain a steady temperature at room pressure and atmospheric pressure. Keep away from light, flame, or high temperatures. Water with semiconductor properties should not be dissolved.

Specification Tin telluride SenTe powder –


Density – g/mL, 25,

Melting Point

Crystal Framework


gray cubic crystal

Note: according to user requirements can provide different size products.

How is TinTe SnTe powder manufactured? 1. Take the high-purity, pure ruthenium, and weigh them. Then seal the container under high vacuum (10-5 Pa). It was slowly heated in a cold oven for 50 to 60 ° C for 72 hours. Once the temperature reaches 435 ° C it is cooled down until the ampule reaches room temperature. 2. Put the high-purity high-purity Tin and Ruthenium in the appropriate chemical measurement ratio into an ampoule made of quartz. You placed the ampoule inside a cold furnace. After heating to about 200° C/h, heat for another 5 hours. Once cool, let it cool to room temperature (for close to 15 hours) to extract high purity SnTe. 3. You will need 1 L to create the electrolytical cell. All metals and glasses should be sealed. To connect to the exhaust gas pump, add or disconnect it from the middle bottle port. During electrolysis, the magnetic stirrer placed in the bottle goes in with the botulfluoroethylene. The buffer solution for the electrolyte (NH4AC-HAC buffer) is 500 ml. Once the electrolyte is in the flask, it should be vacuum-proof. For SnTe precipitation in Sn2+ solution, anode peers are used. 4. Additionally, the electrolyte is also available to be added to your anode. This is done dropwise. Precipitation in electrolyte should be boiling in an argon environment to increase precipitation. Do not permit crystallization to take place until they are exposed to oxygen. To avoid oxidation, you must wash the crystals in an atmosphere of argon for 4 hours. Application to Tin telluride SeNTE Powder Highly pure inorganics are widely used in electronics. They can be found in display, solar cells, crystals growth, functional ceramics or batteries. Packing & Shipping Tintelluride SnTe Powder – There are many options for packing, depending on Tin telluride quantity. Tin telluride snTe powder packaging: vacuum packed, 100g and 500g respectively, or 1kg/bag at 25kg/barrel. Tin telluride or SnTe granule shipping: could either be shipped by sea or by air once payment receipt has been paid.

Tin Telluride Tin Telluride Powder Properties

Tin Telluride, SnTe Powder, Cas 12040-02-7, Tellanylidenestannane, Tellanylidenetin, Tin(II) Telluride 12040-02-7 246.31 Appearance grey solid Melting Point 790 °C (1454 °F) Solubility into water N/A Density 6500kg Purity 99.99% -80mesh, -100mesh Boling figure N/A N/A Heat Conductivity N/A Thermal Expansion N/A Young’s Model N/A Exact 251.824 g/mol Monoisotopic 253.839722

Tin Telluride TinTe powder Health & Safety

Safety Warn N/A Hazard Statements N/A Flashing point N/A Hazard Codes N/A Risk Codes N/A Safety Declarations N/A N/A Transport Information N/A Germany N/A
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