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  2. Manganese dioxide - Wikipedia

    en.wikipedia.org/wiki/Manganese_dioxide

    Manganese dioxide also catalyses the decomposition of hydrogen peroxide to oxygen and water: 2 H 2 O 2 → 2 H 2 O + O 2. Manganese dioxide decomposes above about 530 °C to manganese(III) oxide and oxygen. At temperatures close to 1000 °C, the mixed-valence compound Mn 3 O 4 forms. Higher temperatures give MnO, which is reduced only with ...

  3. Hopcalite - Wikipedia

    en.wikipedia.org/wiki/Hopcalite

    A variety of compositions are known, such as "hopcalite II" that is approximately 60% manganese dioxide and 40% copper oxide (the MnO 2 : CuO molar ratio is 1.375) [2] and "hopcalite I" that is a mixture of 50% MnO, 30% CuO, 15% Co 2 O 3, and 5% Ag 2 O. [2] [3] Hopcalite has the properties of a porous mass and resembles activated carbon in its ...

  4. Manganese (II,III) oxide - Wikipedia

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

    Manganese(II,III) oxide is the chemical compound with formula Mn 3 O 4. ... At room temperature Mn 3 O 4 is paramagnetic, below 41-43 K, it is ferrimagnetic [12] ...

  5. Manganese oxide - Wikipedia

    en.wikipedia.org/wiki/Manganese_Oxide

    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 ...

  6. Manganese(II) oxide - Wikipedia

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

    An alternative route, mostly for demonstration purposes, is the oxalate method, which also applicable to the synthesis of ferrous oxide and stannous oxide. Upon heating in an oxygen-free atmosphere (usually CO 2), manganese(II) oxalate decomposes into MnO: [9] MnC 2 O 4 ·2H 2 O → MnO + CO 2 + CO + 2 H 2 O

  7. Manganese(III) oxide - Wikipedia

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

    Manganese(III) oxide is formed by the redox reaction in an alkaline cell: 2 MnO 2 + Zn → Mn 2 O 3 + ZnO [citation needed] Manganese(III) oxide Mn 2 O 3 must not be confused with MnOOH manganese(III) oxyhydroxide. Contrary to Mn 2 O 3, MnOOH is a compound that decomposes at about 300 °C to form MnO 2.

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