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Delivery Time: | 20-30 Days |
Basic Info
Model No.: SY-10097-28-6
Classification: Other Oxides
Grade Standard: Industrial Grade
Kind: No Salt Oxide
Quality: First Class, Top Grade
Grade: Industrial Grade
Delivery: Fast Delivery
CAS: 10097-28-6
Application: Chemical Raw Materials
Purity: High Purity
Boiling Point: 1880°C
Form: Powder
Color: Black
Melting Point: 1870 °C
Additional Info
Packaging: 25KGS/Bag
Productivity: 1000MT/Month
Brand: Shenyu
Transportation: Ocean,Land,Air, Automobile
Place of Origin: China
Supply Ability: 1000MT/Month
Port: China Port,Qingdao Port,Shanghai Port
Product Description
Product Overview
Silicon monoxide, white cubic crystal or brown powder, insoluble in water, soluble in dilute hydrofluoric acid and nitric acid mixture, reacting with caustic alkali solution to form silicate and hydrogen, can be oxidized by halogen, easy to surface in air Oxidation produces a silica protective film and becomes inactive. It has strong reducing properties at high temperatures and can reduce substances such as water vapor, carbon dioxide, and limestone. In industry, silica and elemental silicon powder are often reacted at a high vacuum of 1400 ° C or higher. After sublimation; commonly used in the preparation of optical glass and semiconductor materials. The silicon monoxide micropowder is highly active and can be used as a raw material for fine ceramics, such as silicon nitride or silicon carbide fine ceramic powder.
Physical Properties
CAS No.: 10097-28-6
Molecular formula: OSi
Molecular weight: 44.09
EINECS number: 233-232-8
Melting point 1870 °C
Boiling point 1880 ° C
Density 2.13 g/mL at 25 °C (lit.)
Refractive index 1.9800
Flash point 1880 ° C
Morphological powder
Color Black
Water solubility Insoluble in water.
Application
The silicon monoxide micropowder is highly active and can be used as a raw material for fine ceramics, such as silicon nitride or silicon carbide fine ceramic powder.
Used as an optical glass and semiconductor material preparation
It is of great value as a fine ceramic raw material. It can also be evaporated in a vacuum and applied to a metal mirror for optical instruments as a protective film. It can also be used to make semiconductor materials. Also used in optical glass.
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