Deccan Chronicle

Element 117 formally named ‘Tennessine’

World body gives final nod to this name about 6 years after its discovery

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Washington, Dec. 1: The superheavy element 117 has been officially named “tennessine” — about six years after its discovery was first reported.

The Internatio­nal Union of Pure and Applied Chemistry (IUPAC) — which validates the existence of newly discovered elements and approves their official names — gave its final approval to the name “Tennessine” following a year-long process.

The IUPAC and the Internatio­nal Union of Pure and Applied Physics announced verificati­on of the existence of the superheavy element 117 last year, more than five years after scientists first reported its discovery in April 2010.

Superheavy elements, which do not occur naturally, are synthesise­d by exposing a radioisoto­pe target to a beam of another specific isotope.

In theory, the nuclei will in rare cases combine into a “superheavy” and heretofore unknown element.

In Tennessine’s case, the atomic recipe for element 117 required the berkelium-249 target.

Over a year-long campaign, US Department of Energy’s Oak Ridge National Laboratory produced and then shipped the 22 milligramm­e of berkeleium-249 to Russia, where the experiment that would yield element 117 was carried out with a heavy-ion cyclotron at Russia’s Joint Institute for Nuclear Research (JINR).

After six months of relentless bombardmen­t with a calcium-48 beam, researcher­s had detected six atoms in which the nuclei of the calcium and berkelium had fused to create element 117. Subsequent experiment­s confirmed the results.

“This discovery is an example of the potential that can be realised when nations come together to lend their unique capabiliti­es toward a scientific vision,” said ORNL’s Jim Roberto, who helped put together the element 117 US-Russia collaborat­ion with JINR’s Yuri Oganessian.

The name Tennessine was chosen in recognitio­n of the contributi­ons of the US state of Tennessee to the discovery.

The specific spelling of Tennessine was chosen because the new element is classified as a halogen, a type of element that by convention ends in the suffix “-ine.”

Halogens include elements such as chlorine and fluorine. Tennessine’s symbol on the Periodic Table will be Ts.

The discovery of superheavy elements is driven by a quest for the long-predicted “island of stability,” in which new elements beyond the existing Periodic Table may survive for exceptiona­lly long periods of time, opening up new and useful vistas of Physics and Chemistry.

 ??  ?? Super-heavy elements, which do not occur naturally, are made by exposing a radioisoto­pe target to a beam of another specific isotope. Tennessine’s symbol on the Periodic Table will be Ts.
Super-heavy elements, which do not occur naturally, are made by exposing a radioisoto­pe target to a beam of another specific isotope. Tennessine’s symbol on the Periodic Table will be Ts.

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