High Purity Manganese Diboride MnB2 Powder CAS 12228-50-1, 99%
About Manganese Diboride MnB2 Powder
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Manganese diboride is a significant inorganic compound with a variety of distinct chemical and physical properties. It has a broad spectrum of applications in the fields of electronics, materials science, and energy.
First, the crystal structure of manganese diboride is a hexagonal crystal system, and each manganese atom forms an octahedral structure with two boron atoms, which have high symmetry and stability. Because of the properties that characterize its crystal structure, manganese diboride has a high hardness, second only to diamond.
Secondly, manganese diboride has a very special electronic structure and is a semi-metallic compound. It is a semiconductor at room temperature but transforms into a metal conductor at low temperatures. This unique electronic structure makes manganese diboride have important applications in the field of electronics, such as the manufacture of integrated circuits and electronic devices.
In addition, manganese diboride also has excellent chemical stability. It does not react with water and oxygen at room temperature and only reacts chemically at high temperatures and in the presence of hydrogen. This chemical stability makes manganese diboride have great potential applications when storing and transporting gases.
In addition, manganese diboride has certain magnetic properties. It becomes ferromagnetic at low temperatures, and this magnetic property can be used to make devices such as magnetic storage and magnetic sensors.
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Technical Parameters of Manganese diboride MnB2 powder:
Product name | MF | Purity | Size of the particle | Molecular weight | Density | The color of the sky |
manganese diboride | MnB2 | 99% | 5-10um | 76.56 | 2.57 g/cm3 | grey |
Manganese Diboride MnB2 powder:
MnB2 | B | Mn | P | S | Si | Mg | Fe |
99% | 17% | Balance | 0.013% | 0.08% | 0.006% | 0.001% | 0.15% |
Application of Manganese Diboride MnB2 Powder
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Batteries and energy storage: Manganese diboride is an excellent cathode material used in the manufacture of high-energy lithium and potassium ion batteries. Its excellent electrical conductivity and chemical stability make it a potential candidate material for battery technology. In the field of energy storage, the application of manganese diboride helps to improve the energy density and life of batteries.
Ceramics and glass industry: Manganese diboride is used as an additive in the ceramics and glass industry. It is able to lower the temperature of sintering as well as enhance the mechanical properties of the product, and enhance the optical properties of the material. Adding manganese diboride to glass can increase the refractive index of glass and improve its optical properties.
Electronics and semiconductor industry: Manganese diboride has semiconductor properties, so it is widely used in the electronics and semiconductor industry. It is mainly used to make diodes but can also be used to produce other electronic components. In addition, manganese diboride can also be used as a dopant to produce silicon-based materials with specific electronic properties.
Catalyst: Manganese diboride can be used as a catalyst for many chemical reactions, such as alkylation reaction, hydrogenation reaction, and dehydrogenation reaction. This is because it has a high active surface and unique electronic properties that can provide the desired activity and selectivity in the reaction.
Magnetic materials: manganese diboride is ferromagnetic, so it has a wide range of applications in the field of magnetic materials. It can be used to produce magnetic recording materials, such as hard disks and magnetic tapes, as well as to make magnetic sensors and other magnetic electronic devices.
Structural materials: Because of their high hardness, strength, and corrosion resistance, manganese diboride can be used to manufacture structural materials and wear parts. It has applications in aerospace, automotive, and oil and gas.
Biomedical: Manganese diboride is biocompatible and bioactive and can be used in the biomedical field. It can be used as a drug carrier for drug delivery and treatment of diseases such as tumors. In addition, manganese diboride can also be used in the production of biological materials and medical devices.
Optics and optoelectronics: Manganese diboride has a high optical transmittance and refractive index, so it can be used to manufacture optical and optoelectronic devices. It has applications in optical fiber communication, laser technology, spectral analysis, and optical sensing.
How is Manganese Diboride MnB2 Powder Produced ?
Direct synthesis method: This method is to directly react to manganese and boron oxides or elements at high temperatures to obtain manganese diboride. The synthesis temperature is usually between 1000 and 1300 degrees Celsius, depending on the raw material used and the reaction atmosphere. At this temperature, manganese and boron oxides react and form manganese diboride. The main problem with this method is that it requires high energy consumption and, therefore, high production costs.
Ion exchange method: The ion exchange method is a commonly used method for the production of manganese diboride, and its basic principle is to use the ion exchanger to exchange the ions in the solution so as to separate the required ions from the solution. This method can be performed at lower temperatures and has higher selectivity. In the production of manganese diboride, an ion exchanger with a specific coordination number can be used for ion exchange with a manganese-containing solution to obtain manganese diboride.
Molten salt electrolysis: Molten salt electrolysis is a method of separating anode and cathode materials by electrolysis using molten salt as an electrolyte. This method has high energy efficiency and low production cost, so it is widely used in industry. In the production of manganese diboride, the oxides or salts of manganese and boron can be dissolved in molten salt, and then manganese diboride can be precipitated on the cathode.
Sol-gel method: The sol-gel method is a method of forming a gel by hydrolyzing, polymerizing, and drying metal alkyls or inorganic salts and then heat treating the gel to obtain the required material. In the production of manganese diboride, the alcohol salt or inorganic salt solution of manganese and boron can be mixed. Then, the appropriate amount of water and regulators are added to form a sol. Manganese diboride was obtained by drying the sol and heat treatment.
Prospect Market of Manganese Diboride MnB2 Powder :
In the field of batteries and energy storage, manganese diboride has potential applications. As a cathode material, it can improve the energy density and life of lithium batteries and potassium ion batteries. With the continuous development of electric vehicles and renewable energy industries, the demand for high-performance batteries and energy storage systems is also increasing, so the market prospects for manganese diboride are very broad.
In the ceramic and glass industries, manganese diboride is used as an additive to improve the mechanical and optical properties of materials. With the continuous improvement of material performance requirements, the application of manganese diboride in ceramics and glass will continue to expand.
In the electronics and semiconductor industry, manganese diboride has semiconductor properties and excellent electrical conductivity, so it has a wide range of applications in the electronics and semiconductor fields. With the continuous development of the electronics and semiconductor industry, the demand for high-performance materials is also growing, so the market outlook for manganese diboride is very positive.
In the field of catalysts, manganese diboride has excellent catalytic properties and can be used as a catalyst for many chemical reactions. With the continuous development of the chemical industry and the continuous improvement of environmental protection and high-efficiency requirements, the application of manganese diboride in the field of catalysts will continue to expand.
In the field of magnetic materials manganese diboride has excellent magnetic properties, so it has a wide range of applications in the field of magnetic materials. With the continuous demand for information processing and storage technology, the development of magnetic materials is also accelerating.
Shipping and Packing of Manganese Diboride MnB2 Powder :
We offer many packing options that are dependent on the amount of manganese Diboride MnB2 Powder.
Manganese Diboride MnB2 powder packing:
You can vacuum pack 100g, 500g, 1kg/bag or 25kg/barrel. Or as you request.
Manganese Diboride MnB2 powder shipping:
You can have your order shipped by air or by sea.
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Manganese Diboride Properties |
Other Titles | Manganese diboride bis(boranylidyne)manganese |
| 12228-50-1 |
Compound Formula | MnB2 |
Molecular Weight | 76.56 |
Appearance | Gray Black Powder |
Melting Point | N/A |
Boiling Point | N/A |
Density | 2.57 g/cm3 |
Solubility of H2O | N/A |
Exact Mass | 76.956661 |
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Manganese Diboride Health & Safety Information |
Sign Language | N/A |
Hazard Statements | N/A |
Hazard Codes | N/A |
Risk Codes | N/A |
Safety statements | N/A |
Transport Information | N/A |
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