Chemical characterization of bohrium (element 107)
The arrangement of the chemical elements in the periodic table highlights resemblances in chemical properties, which reflect the elements' electronic structure. For the heaviest elements, however, deviations in the periodicity of chemical properties are expected: electrons in orbitals with a hi...
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Published in | Nature (London) Vol. 407; no. 6800; pp. 63 - 65 |
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Main Authors | , , , , , , , , , , , , , , , , , , , , , , , , , |
Format | Journal Article |
Language | English |
Published |
England
Nature Publishing Group
07.09.2000
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Subjects | |
Online Access | Get full text |
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Summary: | The arrangement of the chemical elements in the periodic table highlights
resemblances in chemical properties, which reflect the elements' electronic
structure. For the heaviest elements, however, deviations in the periodicity
of chemical properties are expected: electrons in orbitals
with a high probability density near the nucleus are accelerated by the large
nuclear charges to relativistic velocities, which increase their binding energies
and cause orbital contraction. This leads to more efficient screening of the
nuclear charge and corresponding destabilization of the outer d and f orbitals:
it is these changes that can give rise to unexpected chemical properties.
The synthesis of increasingly heavy elements, now including
that of elements 114, 116 and 118, allows the investigation of this effect,
provided sufficiently long-lived isotopes for chemical characterization are
available. In the case of elements 104 and 105, for example,
relativistic effects interrupt characteristic trends in the chemical properties
of the elements constituting the corresponding columns of the periodic table, whereas element 106 behaves in accordance with the expected periodicity. Here we report the chemical separation and characterization
of six atoms of element 107 (bohrium, Bh), in the form of its oxychloride.
We find that this compound is less volatile than the oxychlorides of
the lighter elements of group VII, thus confirming relativistic
calculations that predict the behaviour of bohrium, like
that of element 106, to coincide with that expected on the basis of its position
in the periodic table. |
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Bibliography: | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 ObjectType-Article-2 ObjectType-Feature-1 |
ISSN: | 0028-0836 1476-4687 |
DOI: | 10.1038/35024044 |