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Manganese(VII) oxide (manganese heptoxide) is an inorganic compound with the formula Mn 2 O 7. Manganese heptoxide is a volatile liquid with an oily consistency. It is a highly reactive and powerful oxidizer that reacts explosively with nearly any organic compound. It was first described in 1860. [1] It is the acid anhydride of permanganic acid.
Manganese may also form mixed oxides with other metals : Bixbyite, (Fe III,Mn III) 2 O 3, a manganese(III) iron(III) oxide mineral; Jacobsite, Mn II Fe III 2 O 4, a manganese(II) iron(III) oxide mineral; Columbite, (Fe II,Mn II)Nb 2 O 6, a niobate of iron(II) and manganese(II) Tantalite, (Fe II,Mn II)Ta 2 O 6, a tantalum(V) mineral group close ...
Manganese(II,III) oxide is the chemical compound with formula Mn 3 O 4. Manganese is present in two oxidation states +2 and +3 and the formula is sometimes written as MnO · Mn 2 O 3 . Mn 3 O 4 is found in nature as the mineral hausmannite .
Rhenium diselenide (ReSe 2) also has a layered structure, although, contrary to the other dichalcogenides, rhenium ditelluride does not. [16] In addition, rhenium also forms a heptoxide, which can be produced by the direct reaction of those elements, or through the reaction of ReO 4 − and H 2 S in 4N HCl. [17]
Manganese heptoxide; P. Permanganic acid This page was last edited on 3 July 2024, at 19:14 (UTC). Text is available under the Creative Commons Attribution ...
Manganese(II) oxide is an inorganic compound with chemical formula MnO. [2] It forms green crystals. The compound is produced on a large scale as a component of fertilizers and food additives .
Technetium (VII) oxide containing Technetium-99. Technetium(VII) oxide is the chemical compound with the formula Tc 2 O 7.This yellow volatile solid is a rare example of a molecular binary metal oxide, the other examples being RuO 4, OsO 4, and the unstable Mn 2 O 7.
Re 2 O 7 dissolves in water to give perrhenic acid. Heating Re 2 O 7 gives rhenium dioxide, a reaction signalled by the appearance of the dark blue coloration: [5] 2Re 2 O 7 → 4ReO 2 + 3O 2. Using tetramethyltin, it converts to methylrhenium trioxide ("MTO"), a catalyst for oxidations: [6] Re 2 O 7 + 2Sn(CH 3) 4 → CH 3 ReO 3 + (CH 3) 3 SnOReO 3