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・ Molybdenum cofactor cytidylyltransferase
・ Molybdenum cofactor deficiency
・ Molybdenum cofactor guanylyltransferase
・ Molybdenum cofactor sulfurtransferase
・ Molybdenum deficiency
・ Molybdenum diselenide
・ Molybdenum disilicide
・ Molybdenum disulfide
・ Molybdenum ditelluride
・ Molybdenum hexacarbonyl
・ Molybdenum hexafluoride
・ Molybdenum mining in the United States
・ Molybdenum oxide
・ Molybdenum oxotransferase
・ Molybdenum tetrachloride
Molybdenum trioxide
・ Molybdenum trisulfide
・ Molybdenum(II) acetate
・ Molybdenum(II) bromide
・ Molybdenum(II) chloride
・ Molybdenum(III) bromide
・ Molybdenum(III) chloride
・ Molybdenum(III) iodide
・ Molybdenum(IV) fluoride
・ Molybdenum(IV) oxide
・ Molybdenum(V) chloride
・ Molybdenum(V) fluoride
・ Molybdic acid
・ Molybdite
・ Molybdocene dichloride


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Molybdenum trioxide : ウィキペディア英語版
Molybdenum trioxide

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Molybdenum trioxide is chemical compound with the formula MoO3. This compound is produced on the largest scale of any molybdenum compound. It occurs as the rare mineral molybdite. Its chief application is as an oxidation catalyst and as a raw material for the production of molybdenum metal.
The oxidation state of molybdenum in this compound is +6.
==Structure==

In the gas phase, three oxygen atoms are double bonded to the central molybdenum atom. In the solid state, anhydrous MoO3 is composed of layers of distorted MoO6 octahedra in an orthorhombic crystal. The octahedra share edges and form chains which are cross-linked by oxygen atoms to form layers. The octahedra have one short molydenum-oxygen bond to a non-bridging oxygen.〔Wells, A.F. (1984) Structural Inorganic Chemistry, Oxford: Clarendon Press. ISBN 0-19-855370-6.〕

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