Molybdenum boride
CAS: 2006-99-4
EINECS: 234-502-8
Chemical formula: BMo2
Molecular weight: 202.69
Density: 9.200
Melting point: 2000 ° C
Preparation of molybdenum borohydride:
1. Adopting the reduction method. Boron oxide and molybdenum oxide are obtained by
high-temperature reduction in the presence of carbon. They can also be directly heated
with elemental boron and molybdenum.
2. Molybdenum reacts with boron powder under vacuum conditions of 1300-1400 ℃, and
Mo2B is mainly formed on the surface of molybdenum
Property:
Good conductivity: Molybdenum boride has good conductivity and can be used in electronic
devices and conductive materials. High wear resistance: Molybdenum boride has excellent wear
resistance and corrosion resistance, commonly used in the manufacturing of cutting tools, turning
tools, and wear-resistant materials. High thermal conductivity: Molybdenum boride has excellent
thermal conductivity and can be used in fields such as heat sinks, heating elements, and
high-temperature thermal lenses.
The application areas of molybdenum borohydride include:
Tool manufacturing: Molybdenum boride has excellent hardness and wear resistance, and can
be used to manufacture high-performance cutting tools such as drills, milling cutters, and turning
tools. Electronic devices: Molybdenum boride is used as a conductive material in the semiconductor
industry, and can be used to manufacture electronic devices, electrodes, and triggers. Hard coatings:
Molybdenum boride can be used as a hard coating material, providing excellent wear resistance and
corrosion resistance, and is commonly used in fields such as automobiles and aviation.
Technological innovation
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