Silicide Powder

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High Purity Magnesium Silicide Mg2Si Powder CAS 22831-39-6, 99%

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Magnesium Silicide is the most stable component in the MgSi binary. It is known for its high melting point and hardness as well as high elastic modulus. Purity: 99%
Particle Size: 5-10um

Magnesium Silicide Mg2Si Powder :
Magnesium Silicide is an organic compound that is made up of magnesium and silica. The chemical formula for this inorganic compound is Mg2Si with a molecular weight of 76.71. Cubic crystal in a cyan, or light purple color. The melting point at 1102°C is the relative density at 1.94.
Magnesium silicide does not dissolve in cold water but will decompose in hot. The silica can be totally decomposed by heating it up to 1200°C under hydrogen flow. For the alkali solution, it is stable. Hydrogen and silane can be produced by their decomposition. Mg2Si, the stable compound in the MG-Si binary, has a high melt point, high hardness. High-elastic modus properties make it a narrow-bandgap ntype semiconductor material. These materials are used to manufacture optoelectronic devices and energy devices. Mg2Si has an entire structure that belongs to the facial cube lattice. Its space group is FM3M and its group number is 225. The lattice constant A = 0.6391 nm. The crystal structure shows that each Si atom is in (0, 0, 0, 0), which forms a facial cubic structure of a long A. The MG atom, located in the (0.25, 0.25, 0.25) location, is found in the middle of the tetrahedron of Si atoms. It forms an unfilial, unfilial structure at A / 2. Magnesium Silicide is a narrow-gap semiconductor. While the conductivity of the crystals is n-type, it can also be doped with Ag or Ga or Sn and possibly Li (at a high doped level). Send an inquiry for the most current price to purchase Magnesium Silicide Sg2Si Powder bulk.

Magnesium Silicide, Mg2Si powder:
Magnesium silicide (CAS 22833-39-6) powder has a high melting temperature, high corrosion resistance.

Technical Parameter Magnesium Silicide Mg2Si powder:
Product Name MF Purity Particle size Melting Point Density The color of the sky
Silicide magnesium Mg2Si 99% 5-10um 1102 1.94 g/cm3 black

Chemical composition of Magnesium Silicide Powder Mg2Si:
Mg2Si Mg Si C P Fe S
>99% Balance 36% 0.09% 0.02% 0.25% 0.005%

It is simple. Silicide for Magnesium Mg2Si Powder produced?
Silica powder has a particle size of 180. Magnesium powder is 100g. Research has revealed that silica magnesium reacts at 600°C for 4 hours, with a cooling rate of 10°C/min. This results in optimum product quality and an increase of 98% of magnesium silicide.

Magnesium Silicide Mg2Si Powder :
Magnesium Silicide is used often to create aluminum alloys. This contains around 1.5% magnesium sulicide.
To produce a series of aluminum alloys, 6000 series with up to 1.5% magnesium silicide, Magnesium Silicide can be used. It is possible to harden the alloy of this group and create the Guinier PRESTON zone or a very fine precipitate. This will increase the alloy's strength.
The principal electronic use of MG2Si's MG2Si can be found in its thermoelectric generator.
Magnesium silicides are primarily synthesized.
It is used for the production of MgSin2 powder. It is useful in the production of non-oxide clay powder.
An by-product of silicide magnesium silicide

Shipping Magnesium Silicide mg2Si Powder
We offer many packing options that are dependent on the amount of magnesium silicide, Mg2Si.
Packing of Magnesium silicide, Mg2Si powder: You can vacuum pack 1kg/bag or 25kg/barrel.
Delivery of magnesium silicide Mg2Si in powder form: If payment is received, items may be sent out either by sea or air.

Magnesium Silicide Properties

Other Titles dimagnesium silicide, dimagnesium monisilicide,
MgSi, Mg2Si powder
22831-39-6
Compound Formula Mg2Si
Molecular Weight 76.7
Appearance Gray Black Powder
Melting Point N/A
Boiling Point N/A
Density 1.94 g/cm3
Solubility of H2O N/A
Exact Text 75.94701

Magnesium Siicide Health and Safety Information

Mark Word Danger
Hazard Statements H261
Hazard Codes F
Risk Codes 14/15
Safety statements N/A
Transport Information UN 2624 4.3/PG2

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