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Chromium dioxide or chromium(IV) oxide is an inorganic compound with the formula CrO 2. It is a black synthetic magnetic solid. [3] It once was widely used in magnetic tape emulsion. [4] With the increase in popularity of CDs and DVDs and more recently digital media, the use of chromium(IV) oxide has declined.
Predominance diagram for chromate. In aqueous solution, chromate and dichromate anions exist in a chemical equilibrium.. 2 CrO 2− 4 + 2 H + ⇌ Cr 2 O 2− 7 + H 2 O. The predominance diagram shows that the position of the equilibrium depends on both pH and the analytical concentration of chromium.
Chromium compounds are compounds containing the element chromium (Cr). Chromium is a member of group 6 of the transition metals . The +3 and +6 states occur most commonly within chromium compounds, followed by +2; charges of +1, +4 and +5 for chromium are rare, but do nevertheless occasionally exist.
Download QR code; Print/export Download as PDF; Printable version; In other projects Wikidata item; Appearance. move to sidebar hide. Chromium oxide may refer to: ...
Potassium peroxochromate is prepared by treating potassium chromate with hydrogen peroxide at 0 °C: . 2 CrO 2− 4 + 8 H 2 O 2 → 2 [Cr(O 2) 4] 2− + 8 H 2 O. The intermediate tetraperoxochromate(VI) is reduced by hydrogen peroxide, forming tetraperoxochromate(V): [3] [4]
The chemical composition of chromite can be represented as FeCr 2 O 4, with the iron in the +2 oxidation state and the chromium in the +3 oxidation state. [5] bauxite, when presented as an ore, or in massive form, forms as fine granular aggregates. The structure of the ore can be seen as platy, with breakages along planes of weakness. Chromite ...
Oxidation numbers are fundamental to the chemical nomenclature of ionic compounds. For example, Cu compounds with Cu oxidation state +2 are called cupric and those with state +1 are cuprous. [4]: 172 The oxidation numbers of elements allow predictions of chemical formula and reactions, especially oxidation-reduction reactions. The oxidation ...
The different crystals contain a range of sulfur impurities ranging from the more pure dark crystals, Ba 1.00 (Cr 0.93, S 0.07) 1.00 O 4, to the less pure light crystals, Ba 1.00 (Cr 0.64, S 0.36) 1.00 O 4. [3] Hashemite was found to be an isostructural chromate analog of baryte, BaSO 4. [4]