articleTop 1% cited
Covalent radii revisited
Dalton Transactions · 2008 · pp. 2832–2832
Beatriz Cordero(Universitat de Barcelona)Verónica Gómez(Universitat de Barcelona)Ana E. Platero‐Prats(Universitat de Barcelona)Marc Revés(Universitat de Barcelona)Jorge Echeverría(Universitat de Barcelona)E. Cremades(Universitat de Barcelona)Flavia Barragán(Universitat de Barcelona)Santiago Álvarez✉(Universitat de Barcelona)
Abstract
A new set of covalent atomic radii has been deduced from crystallographic data for most of the elements with atomic numbers up to 96. The proposed radii show a well behaved periodic dependence that allows us to interpolate a few radii for elements for which structural data is lacking, notably the noble gases. The proposed set of radii therefore fills most of the gaps and solves some inconsistencies in currently used covalent radii. The transition metal and lanthanide contractions as well as the differences in covalent atomic radii between low spin and high spin configurations in transition metals are illustrated by the proposed radii set.
Inorganic Fluorides and Related CompoundsX-ray Diffraction in CrystallographyRare-earth and actinide compoundsCovalent bondAtomic radiusTransition metalLanthanideSpin (aerodynamics)Atomic numberChemistryMaterials scienceCrystallographyAtomic physics
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References
van der Waals Volumes and Radii
The Journal of Physical Chemistry · 1964 · 19,102 citations
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