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Europium Information

Europium Information
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Europium Element

Europium is a chemical element with the symbol Eu and atomic number 63. Europium is the most reactive lanthanide by far, having to be stored under an inert fluid to protect it from atmospheric oxygen or moisture. Europium is also the softest lanthanide, as it can be dented with a fingernail and easily cut with a knife. When oxidation is removed a shiny-white metal is visible. Europium was isolated in 1901 and is named after the continent of Europe.[5] Being a typical member of the lanthanide series, europium usually assumes the oxidation state +3, but the oxidation state +2 is also common. All europium compounds with oxidation state +2 are slightly reducing. Europium has no significant biological role and is relatively non-toxic compared to other heavy metals. Most applications of europium exploit the phosphorescence of europium compounds. Europium is one of the rarest of the rare earth elements on Earth.[6]
Properties of europium

Europium, a member of the lanthanides group of elements, ignites at air temperatures of 302 to 356 F (150 to 180 C), which is the case of all other rare earth metals with the exception of lanthanum. Europium can be easily molded or shaped and is about as hard as lead. It is the most reactive of the rare earth metals, quickly oxidizing in air and, like calcium, it reacts quickly and vigorously with water. [See Periodic Table of the Elements]


Sources of europium

Europium can be found in the ores bastnasite and monazite. The element has also been identified in the sun and some stars.

Europium is produced by mixing europium oxide (Eu2O3) with a 10 percent excess of lanthanum metal and heating the mixture under high vacuum. During the process, a silvery-white metallic substance containing europium is deposited on the walls of the container.

Uses of europium

Laser material is one byproduct of europium-doped plastic. The cost of production has been greatly reduced through the development of special processes and ion-exchange techniques.

There are 17 isotopes currently recognized, some of which are being studied for use in nuclear control applications because they are good neutron absorbers.

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