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Aluminum Boride
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The binary mixture of Boron, aluminum, and Boron can be called Aluminum Boride. The chemical formula for aluminum boride is AlB2. AlB2 is its chemical formula. The material is a brownish color at all temperatures and pressures. It loses the surface luster when heated. It can be used in cold dilute but will not dissolve in hot hydrochloric, or nitric solutions. Aluminum and boron react when mixed with fine powders.
These are the Characteristics of Aluminum Boride
Aluminum Boride is a monoclinic black-glossy crystal that has a specific gravity 2.55 (18degC). It can also be made from aluminum trioxide or sulfur. Reacting aluminum boride to hydrogen can result in dangerous gasses. Aluminium boride reacts to hydrochloric, releasing borane and/or aluminum chloride. In graphite, B atoms form graphite sheets. These sheets look similar to sheets but have Al atoms between. It is similar to the magnesium diboride. AlB2 (a single crystal) exhibits metallic conductivity, with an axis parallel to the hexagonal plan on the substrate.
Aluminum Diboride AlB2 Powder Properties | |
Descriptions | aluminium boride, aluminum diboride, AIB2 |
12041-50-8 | |
Combination Formula | AlB2 |
Motility | 48.604 g/mol |
Appearance | Copper-red solid |
Melting Point | >920 degC (decomposes) |
Solubility Into Water | It is impossible to solve |
Density | 3.19 g/cm3 |
Purity | >98.5% |
Particle size | 5-10um |
Poissons’ Rate | N/A |
Particular Heat | N/A |
Aspects of Thermo Conductivity | N/A |
Thermal Expansion | N/A |
Young’s Modular | N/A |
Exact | 49.000149 |
Monoisotopic | 49.000149 |
Aluminum Diboride AlB2 Powder CAS 12041-50-8
How to prepare aluminum Iboride
AlB12 was made by a powder metalurgist. Both the Xray scattering microscope, and the scanning electron microscope were used to analyze the product’s composition. It was shown that the product’s buried powder Al level can determine its impurities. The buried powder Al content is 30% (mass content, the same below), and elemental Al exists in the product; the buried powder Al content is 10%, and the impurities are mainly Al2O3; When the Al content of the buried powder is 20%, the impurity content is the least, which is mainly oxy-magnesium-aluminum phase. The best conditions to synthesize are: constant temperature, 1400degC, 60 min, and Al contents of 17.2%, 20%, and buried powder.
Aluminum Boride: What is its application?
AlB2 & AlB4 share a similar structure to the intermetallic compound. It is the crystal structure that determines how aluminum borides are formed, not their valence relations. AlB2, AlB4, AlB12, and AlB4 all are aluminum borides. AlB2 (or diboride) can be formed by the addition of two elements larger than 600. It is composed of a layer structure. Al and B atoms are directly overlapped (A mode, A mode), which is reflected in the Triangular Column made by Al Atoms. These boron layers can be found between Al and B atoms. It is similar in structure and function to graphite’s boron layer. These boron molecules form a hexagonal network. Distance between B atoms (and other B atoms) is 0.1773nm. You will find the six Al-atoms linked to B at the vertices of the Triangular Prism inferior. AlB2 can be dispersed in dilute hydrochloric Acid to form a reducing solution. It could contain HB (+)+. AlB2 can’t be dissipated with dilute sulfuric Acids, but it is easily dissolved when mixed in nitric. AlB2 can eventually become AlB12 when it reaches the temperature of 920C.
Aluminum Boride’s principal supplier
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