Production and Application of Magnesium Diboride MgB2 Powder

How is magnesium diboride MgB2 powder produced?

The preparation method of MgB2 is mainly synthesized by the mixed reaction of magnesium powder and boron powder.

MgB2 is obtained by mixing 99.9% magnesium powder and 99% amorphous boron powder in a ratio of 1:2, pressing them into small balls, and heating them in high-pressure nitrogen.

At present, the commonly used method is to mix the amorphous element boron powder and magnesium powder in a stoichiometric ratio (or add excessive magnesium), then put them into a sealed refractory metal container (such as tantalum), and then put a quartz tube to vacuum , And then sintered at 700~950 ℃ for 1~4 h to synthesize MgB2.

Overview of magnesium diboride MgB2 powder

Magnesium diboride is an inorganic compound with the molecular formula MgB2. It is a dark gray insoluble solid. It is an ionic compound with a hexagonal crystal structure. It is an intercalation compound with alternating layers of magnesium and boron. This compound is of interest because of its superconductivity at 39 K (-234°C). In terms of composition, MgB2 is significantly different from most transition metal-based low-temperature superconductors.

Scientists have known magnesium diboride for nearly 50 years, but no one has studied the superconductivity of this material—whether it can conduct electricity perfectly without resistance when it is cooled to a temperature close to absolute zero. All this changed in January 2001. Jun Akimitsu of Tokyo’s Aoyama Gakuin University announced that he and his team had discovered that magnesium diboride became superconducting at 39 degrees Kelvin (-389 degrees Fahrenheit), which is almost the current metal. Twice the temperature of the conductor. This news made experimenters all over the world scramble to replicate and confirm the Japanese discovery.

Magnesium diboride transforms into a superconductor at a temperature slightly close to the absolute temperature of 40K (-233°C). Its transition temperature is almost twice that of other superconductors of its kind, and its actual working temperature is between 20-30K. This temperature can be achieved by liquid neon gas, liquid hydrogen or a closed-cycle refrigerator. These methods are simpler and cheaper than the industry's use of liquid helium to cool niobium alloys (4K). Once doped with carbon or other impurities, magnesium boride maintains superconductivity as good as niobium in the presence of a magnetic field or current, or even better.

Magnesium Diboride MgB2 powder Application

Potential applications of magnesium diboride include superconducting magnets, power transmission lines, and sensitive magnetic field detectors.

Magnesium diboride is a new material that has attracted attention. The research mainly focuses on the properties of synthetic and superconducting elements, used in industrial synthesis and sintering properties, electrical conductivity at room temperature, corrosion resistance of liquid aluminum, and corrosion resistance of fluoride There are few studies, so MgB2 and its composite materials have not been used to cover the cathode area of aluminum electrolysis.

MgB2 is easier to sinter and densify than TiB2, and its electrical conductivity basically meets the requirements of aluminum electrolytic cathodes. Therefore, MgB2 and its composite materials may be widely used as cathode materials for aluminum electrolysis.

Propellants, explosives, pyrotechnics: different from the incomplete combustion of elemental boron through a glass oxide layer that prevents the diffusion of oxygen, magnesium diboride burns completely in oxygen or an oxidant mixture. Therefore, magnesium boride has been proposed as a fuel for ramjet engines. In addition, for the same reason, it has been proposed to use MgB2 in enhanced explosives and propellants.

Magnesium diboride MgB2 powder price

The price of magnesium diboride MgB2 powder varies randomly with factors such as production costs, transportation costs, international conditions, exchange rates, and changes in supply and demand in the MoB2 market for molybdenum boride powder. Tanki New Materials Co.,Ltd. aims to help various industries and chemical wholesalers find high-quality, low-cost nanomaterials and chemicals by providing a full set of customized services. If you are looking for magnesium diboride MgB2 powder materials, please feel free to contact for the latest magnesium diboride MgB2 powder prices.

Supplier of magnesium diboride MgB2 powder

As a global supplier of magnesium diboride MgB2 powder, Tanki New Materials Co.,Ltd has extensive experience in the performance, application and cost-effective manufacturing of advanced engineering materials. The company has successfully developed a series of powder materials (including oxides, carbides, nitrides, single metals, etc.), high-purity targets, functional ceramics and structural devices, and provides OEM services.

Magnesium Boride Properties

Other Names magnesium boride powder, MgB2, MgB2 powder,
agnesium diboride
CAS No. 12007-25-9
Compound Formula MgB2
Molecular Weight 45.927
Appearance Gray to Black Powder
Melting Point 830 °C
Boiling Point N/A
Density 2.57 g/cm3
Solubility in H2O N/A
Exact Mass 46.003653
Monoisotopic Mass 46.003653

Magnesium Boride Health & Safety Information

Signal Word N/A
Hazard Statements N/A
Hazard Codes N/A
Risk Codes N/A
Safety Statements N/A
RTECS Number N/A
Transport Information NONH for all modes of transport
WGK Germany 3

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