Today, we are going to delve into the fascinating world of Ammonium dimolybdate. Since time immemorial, Ammonium dimolybdate has been a source of intrigue, excitement and debate. Whether it's its impact on society, its relevance in history, or its influence on the modern world, Ammonium dimolybdate has always held a prominent place in people's minds and hearts. In this article, we will explore in detail the importance and meaning of Ammonium dimolybdate, analyze its impact on different aspects of everyday life and delve into the reasons why Ammonium dimolybdate continues to generate interest and passion today. So get ready to immerse yourself in a captivating journey through the history, culture and relevance of Ammonium dimolybdate in today's world.
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Other names
ADM
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Identifiers | |
3D model (JSmol)
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ChemSpider | |
ECHA InfoCard | 100.044.092 |
EC Number |
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PubChem CID
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CompTox Dashboard (EPA)
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Properties | |
H8N2Mo2O7 | |
Appearance | white solid |
Density | 2.97 g/cm3 |
Except where otherwise noted, data are given for materials in their standard state (at 25 °C , 100 kPa).
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Ammonium dimolybdate (ADM) is the inorganic compound with the formula (NH4)2Mo2O7. It is a white, water-soluble solid. ADM is an intermediate in the production of molybdenum compounds from its ores. Roasting typical ore produces crude molybdenum(VI) oxides, which can be extracted into aqueous ammonia, affording ammonium molybdate. Heating solutions of ammonium molybdate gives ADM. Upon heating, solid ammonium dimolybdate decomposes to molybdenum trioxide:[1]
In terms of its chemical structure, the anion is a polymeric consisting of distorted octahedral Mo centers linked by tetrahedral molybdate centers.[2] When prepared in the absence of water as its tetrabutylammonium salt, dimolybdate adopts the centrosymmetric structure observed for dichromate.[3]