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Manganese dioxide This inorganic compound has the chemical formula MnO2 and is either a powdery black or orthorhombic crystals. Manganese dioxide can be used as a rust remover, an oxidant or in the preparation manganese sulfates.

Magnesium dioxide powder properties

Manganese oxide is not soluble in water, weak acid or base, nitric acids and cold sulfuric acid. However, it can be dissolved in concentrated hydrochloric solution heated to produce chlorine gas.
Manganese dioxide is octahedral in structure. The oxygen atoms on the corners are the manganese atoms. Manganese is in the octahedrons. The octahedrons form a chain by connecting them together. These chains, along with other chains, are placed on top to form a void-filled tunnel structure. The octahedron may be either hexagonally or squarely packed.

Manganese dioxide, also known as amphoteric iron oxide, is a very stable black powdery solid at room temperature. At room temperature, it is a powdery black solid. It can also be used as a dry battery depolarizer. In the laboratory its oxidizing qualities are often used by HCl to produce chloride.

Magnesium dioxide Powder Applications

Manganese dioxide can be used to depolarize dry batteries. It is also used in the synthesis and glass industries as an oxidant, catalyst, colorant and decolorizer. Manganese dioxide can be used to make metallic manganese as well as special alloys, gasmasks, electronic material ferrites, and ferromanganese casts.

Manganese oxide can be used in rubber to increase viscosity, as well as in chemical experiments.

Laboratory Use
Manganese dioxide can be used as a catalyst for the breakdown of hydrogen peroxide in order to produce oxygen.
The manganese oxide is used as catalyst in the decomposition of potassium chlorate.
Manganese dioxide is produced by thermite reactions between elemental aluminium powder and manganese oxide.
Manganese oxide is used for a yellow pigment in glass, and so on.
When manganese oxide reacts with hydrochloric acid heated to a concentrated state, it produces chlorine.
When manganese oxide reacts with molten potassic potassium (potassium hydroxide) in the atmosphere, potassium manganate is produced.
Manganese oxide acts as an auto-catalyst in the decomposition of potassium permanganate.

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