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  2. Manganese heptoxide - Wikipedia

    en.wikipedia.org/wiki/Manganese_heptoxide

    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.

  3. Manganese oxide - Wikipedia

    en.wikipedia.org/wiki/Manganese_Oxide

    It may refer more specifically to the following manganese minerals: Birnessite, (Na,Ca) 0.5 (Mn IV,Mn III) 2 O 4 · 1.5 H 2 O; Buserite, MnO 2 ·nH 2 O; Hausmannite, Mn II Mn III 2 O 4; Manganite, Mn III O(OH)

  4. Manganese (II,III) oxide - Wikipedia

    en.wikipedia.org/wiki/Manganese(II,III)_oxide

    Mn 3 O 4 has the spinel structure, where the oxide ions are cubic close packed and the Mn II occupy tetrahedral sites and the Mn III octahedral sites. [3] The structure is distorted due to the Jahn–Teller effect. [3]

  5. File:Mn2O7.svg - Wikipedia

    en.wikipedia.org/wiki/File:Mn2O7.svg

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  7. Manganese(III) oxide - Wikipedia

    en.wikipedia.org/wiki/Manganese(III)_oxide

    α-Mn 2 O 3 has the cubic bixbyite structure, which is an example of a C-type rare earth sesquioxide (Pearson symbol cI80, space group Ia 3, #206). The bixbyite structure has been found to be stabilised by the presence of small amounts of Fe 3+ , pure Mn 2 O 3 has an orthorhombic structure ( Pearson symbol oP24, space group Pbca, #61).

  8. Manganese(II) oxide - Wikipedia

    en.wikipedia.org/wiki/Manganese(II)_oxide

    MnO has the distinction of being one of the first compounds [4] to have its magnetic structure determined by neutron diffraction, the report appearing in 1951. [5] This study showed that the Mn 2+ ions form a face centered cubic magnetic sub-lattice where there are ferromagnetically coupled sheets that are anti-parallel with adjacent sheets.

  9. Manganese(IV) fluoride - Wikipedia

    en.wikipedia.org/wiki/Manganese(IV)_fluoride

    Manganese tetrafluoride is in equilibrium with manganese(III) fluoride and elemental fluorine: . MnF 4 ⇌ MnF 3 + ⁠ 1 / 2 ⁠ F 2. Decomposition is favoured by increasing temperature, and disfavoured by the presence of fluorine gas, but the exact parameters of the equilibrium are unclear, with some sources saying that MnF 4 will decompose slowly at room temperature, [14] [15] others placing ...