Ammonium metatungstate hydrate is a compound with a variety of chemical properties, and it can react with a wide range of substances. The following are substances with which ammonium metatungstate hydrate may react and their reaction characteristics:
Ethanol
Ammonium metatungstate hydrate is readily soluble in ethanol, which means that in ethanol it can dissolve quickly and form a corresponding solution.
Hydrogen chloride
Ammonium metatungstate hydrate can react with hydrogen chloride, but the specific reaction products and conditions are not mentioned in detail in the referenced article.
Ether
Similarly, ammonium metatungstate hydrate can react with ethyl ether, but the specific reaction details are also not detailed in the referenced article.
Other Tungsten Compounds
Ammonium metatungstate hydrate can be converted to other tungsten compounds under specific reaction conditions. For example, it can be converted to tungsten powder or other tungsten compounds for a variety of industrial applications by specific preparation processes.
Metal ions
In some specific synthesis processes, ammonium metatungstate hydrate can combine with metal ions (e.g., Pt, WC, etc.) to form catalysts or materials with specific functions. For example, in the synthesis of hydrogen precipitation electrocatalysts, ammonium metatungstate hydrate can be combined with Pt and WC nanoparticles to form catalysts with high performance and excellent hydrogen precipitation stability.
Oxidizing and reducing agents
Due to its strong oxidizing and reducing properties, ammonium metatungstate hydrate may undergo redox reactions with oxidizing or reducing agents.
Insoluble in benzene
It is noteworthy that ammonium metatungstate hydrate is insoluble in benzene, which indicates that it will not undergo obvious chemical reaction or dissolution phenomenon when contacting with organic solvents such as benzene.
In summary, ammonium metatungstate hydrate can react with a variety of substances such as ethanol, hydrogen chloride, ether, etc. It can also be converted into other tungsten compounds or combined with metal ions to form materials with specific functions. However, the specific reaction conditions and products may vary depending on the experimental conditions and types of reactants.
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