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Vanadium disilicide(VSi2)

Vanadium disilicide(VSi2)

  • Classification:Silicide series
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  • Date of issue:2025-05-08 14:43:47
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VSi2

Product Name: Vanadium Disilicide (VSi2) 
Specification: 0.8-10um (D50) 
Appearance: Irregular 
Color: Black Grey 
Characteristics: Antioxidant stability 
Purpose: To prepare large-scale integrated circuits

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VANADIUM SILICIDE 

Molecular formula: VSi2 

Molecular weight: 107.11 

MOLFile:12039-87-1.mol 

CAS number: 12039-87-1 

EINECS number: 234-908-5 

Melting point: 1677 ° C 

Density: 4.42 g/cm3 

Accurate quality: 106.897817 

Single isotope mass: 106.897817 

Preparation: It is obtained by direct reaction of vanadium metal and elemental silicon in a ratio under inert gas protection at high temperature. 

Purpose: 

In the field of electronics, vanadium silicide is a key material in semiconductor device manufacturing. It can be used as an electrode material, significantly improving the performance of electronic devices. In chip manufacturing, vanadium silicide can facilitate smooth current conduction, reduce resistance, and thus improve the operating speed and efficiency of chips. In addition, vanadium silicide also has important applications in ultra large scale integrated circuits, which can prepare thin layer silicides, avoid PN junction breakdown, and ensure circuit stability. 

In the field of energy, vanadium silicide performs well in battery technology. It can improve the energy storage and conversion efficiency of batteries, enabling them to store more electricity and charge faster. Vanadium silicide has broad application prospects in electric vehicle batteries and is expected to significantly increase the range of electric vehicles. In addition, vanadium silicide also has potential applications in the manufacturing of solar cells, which may improve the photoelectric conversion efficiency. 

In the field of mechanical manufacturing, vanadium silicide is used to enhance the performance of mechanical components, especially hardness and wear resistance. For example, the use of vanadium silicide treated materials for key components of automobile engines significantly improves wear resistance, prolongs the service life of the components, and reduces maintenance frequency. In addition, industrial cutting tools become sharper and more durable after being treated with vanadium silicide, greatly improving cutting efficiency. 

Packaging and storage: This product is packaged in an inert gas filled plastic bag, sealed and stored in a dry and cool environment. It should not be exposed to air to prevent moisture and oxidation aggregation, which may affect dispersion performance and usage effectiveness.

Vanadium silicide

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