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Praseodymium disilicide (PrSi2)

Praseodymium disilicide (PrSi2)

  • Classification:Rare Earth Silicides series
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  • Date of issue:2024-12-10 21:32:45
  • Summary
  • Characteristic
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Praseodymium disilicide (PrSi2)

Name: Praseodymium silicide
English name: praseodymium silicide
Molecular formula: PrSi2
Molecular weight: 68.18170
Density (g/cm3) : 5.46
Melting point (℃) : 1712
Molecular weight: 201.11076

Praseodymium disilicide (PrSi2)manufacturers

Praseodymium disilicide (PrSi2)

Praseodymium disilicide (PrSi2)manufacturers

Praseodymium disilicide (PrSi2)

Praseodymium disilicide (PrSi2)manufacturers

English name: praseodymium silica 
Molecular formula: PrSi2 
Molecular weight: 68.18170 
Density (g/cm3): 5.46 
Melting point (℃): 1712 
Molecular weight: 201.11076 
Property: Its crystal structure belongs to the orthorhombic system, with high hardness and good mechanical properties. Silicon praseodymium has good electrical and magnetic properties. 
Manufacturing method: 
The preparation of praseodymium silicide is generally carried out through chemical synthesis methods. The commonly used preparation methods include solid-phase reaction and solution method. For example, praseodymium and silicon powders can be mixed and reacted under high temperature conditions to ultimately obtain the product of praseodymium silicide. 
Purpose: 
Praseodymium silicide has important applications in many fields. Its stability and electrical performance are often used as protective coatings for reactor materials, which can provide good high temperature resistance and radiation performance. Silicon praseodymium can also be used to prepare high-tech products such as electronic devices, fiber amplifiers, and solid-state lasers. 
Security information: 
Under general conditions, praseodymium silicide is relatively stable, non flammable, and insoluble in water. When exposed to high temperatures or oxidants such as oxygen, a reaction may occur that releases toxic gases. Necessary safety measures should be taken when operating praseodymium silicide, and it should be ensured that it is carried out in a well ventilated environment. When handling praseodymium silicide, appropriate personal protective equipment such as gloves and goggles should be worn.

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