Flerovium
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- Work cat.: Aldridge, S. Ununquadium, ununtrium, ununpentium, ununhexium, ununseptium, and ununoctium, 2012.
- Beck, J. Two new super-heavy elements added to the periodic table, 2011, via Popsci website, viewed Aug. 31, 2012(The periodic table of the elements now officially has two new members, its heaviest ever. The new elements, 114 and 116 weigh 289 and 292 atomic mass units, respectively. Elements 114 and 116 currently have placeholder names - ununquadium and ununhexium. Their Russian discoverers at Dubna Joint Institute for Nuclear Research have proposed to name 114 flerovium for Soviet nuclear physicist Georgy Flyorov and to name 116 moscovium after the region Moscow Oblast.)
- Mann, A. 2 new elements named on periodic table, 2012, via Wired science website, viewed Aug. 31, 2012(two new residents of the period table of elements: Flerovium and Livermorium; The International Union of Pure and Applied Chemistry officially approved names for the elements - which sit at slot 114 and 116, respectively - on May 31. They have until now gone by the temporary monikers ununquadium and ununhexium. Both elements are man-made, having first been synthesized at the Joint Institute of Nuclear Research in Dubna, Russia, in 1998 and 2000; Flerovium's symbol will be Fl (not to be confused with fluorine))
- Wikipedia, Aug. 31, 2012(Flerovium (formerly ununquadium) is the radioactive chemical element with the symbol Fl (formerly Uuq) and atomic number 114. The element is named after Russian physicist Georgy Flyorov, the founder of the Joint Institute for Nuclear Research in Dubna, Russia, where the element was discovered. The name was adopted by IUPAC on May 31, 2012. Element category: unknown; likely a post-transition metal, although possibly chemically inert like a noble gas)
- Maugh, T.H. Livermorium and flerovium : new names for heavy elements, via Los Angeles times, June 1, 2012, viewed on Aug. 31, 2012(The super-heavy elements 114 and 116 have officially been recognized by the International Union of Pure and Applied Chemistry, the official arbiter of chemical names, and have been named in honor of the U.S. and Russian institutions where they were jointly discovered. Element 114 has been named flerovium, with the symbol Fl, in honor of the Flerov Laboratory on Nuclear Reactions in Dubna.)
- The element flerovium, via It's elemental : the periodic table of elements website, Aug. 31, 2012(Flerovium; Fl; Atomic Number: 114; Atomic Weight: 289; Element Classification: Metal; Period Number: 7; Group Number: 14; Group Name: none; radioactive and artificially produced; Flerovium was first produced by scientists working at the Joint Institute for Nuclear Research in Dubna, Russia in 1998. They bombarded atoms of plutonium with ions of calcium. This produced a single atom of flerovium-289, an isotope with a half-life of about 21 seconds. Flerovium's most stable isotope, flerovium-289, has a half-life of about 21 seconds. It decays into copernicium-285 through alpha decay.)
Wikipedia description:
Flerovium is a synthetic chemical element; it has symbol Fl and atomic number 114. It is an extremely radioactive, superheavy element, named after the Flerov Laboratory of Nuclear Reactions of the Joint Institute for Nuclear Research in Dubna, Russia, where the element was discovered in 1999. The lab's name, in turn, honours Russian physicist Georgy Flyorov (Флёров in Cyrillic, hence the transliteration of "yo" to "e"). IUPAC adopted the name on 30 May 2012. The name and symbol had previously been proposed for element 102 (nobelium) but were not accepted by IUPAC at that time. It is a transactinide in the p-block of the periodic table. It is in period 7 and is the heaviest known member of the carbon group. Initial chemical studies in 2007–2008 indicated that flerovium was unexpectedly volatile for a group 14 element. More recent results show that flerovium's reaction with gold is similar to that of copernicium, showing it is very volatile and may even be gaseous at standard temperature and pressure. Nonetheless, it also seems to show some metallic properties, consistent with it being the heavier homologue of lead. Very little is known about flerovium, as it can only be produced one atom at a time, either through direct synthesis or through radioactive decay of even heavier elements, and all known isotopes are short-lived. Six isotopes of flerovium are known, ranging in mass number between 284 and 289; the most stable of these, 289Fl, has a half-life of ~2.1 seconds, but the unconfirmed 290Fl may have a longer half-life of 19 seconds, which would be one of the longest half-lives of any nuclide in these farthest reaches of the periodic table. Flerovium is predicted to be near the centre of the theorized island of stability, and it is expected that heavier flerovium isotopes, especially the possibly magic 298Fl, may have even longer half-lives.
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