Atomic and Ionic Radii of Elements 1 –96

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Corrigendum: Atomic and Ionic Radii of Elements 1-96.

Atomic and cationic radii have been calculated for the first 96 elements, together with selected anionic radii. The metric adopted is the average distance from the nucleus where the electron density falls to 0.001 electrons per bohr(3) , following earlier work by Boyd. Our radii are derived using relativistic all-electron density functional theory calculations, close to the basis set limit. The...

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Atomic, Ionic and Bohr Radii Linked via the Golden Ratio for Elements of Groups 1 - 8 including Lanthanides and Actinides

In an earlier article, atomic radii of elements of Groups 1A 8A were shown to be proportional to their Bohr radii obtained from the first ionization potentials and the constants of proportionality were shown to be simple functions of the Golden ratio. Here it is shown that the above finding holds also for elements of Groups 1B 8B including Lanthanides and Actinides. All the relevant data are pr...

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Atomic radii of noble gas elements in condensed phases

Neutral atomic radii of dissolved noble gas elements in condensed phases are obtained by treating the neutral atoms as "ions" of zero oxidation state and by interpolation from a plot of radius vs. oxidation state for isoelectronic ions. The major assumption is that the radius of an ion or a neutral atom having an electronic configuration of a noble gas element depends primarily on the interacti...

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Effective Ionic Radii in Oxides and Fluorides*

BHUIYA, A. K. & STANLEY, E. (1963). Acta Cryst. 16, 981. BUSING, W. R., MARTIN, K. O. & LEVY, H. A. (1962). ORFLS: A FORTRAN Crystallographic Least-Squares Program. Oak Ridge National Laboratory, Oak Ridge, Tennessee. CADY, H. H. (1967). Acta Cryst. 23, 601. DANIELSEN, J. (1963). ALGOL Program D45. Univ. of Aarhus, Denmark. FOLTING, K., LrPSCOMB, W. N. & JERSLEV, B. (1964). Acta Cryst. 17, 1263...

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Lattice parameters and stability of the spinel compounds in relation to the ionic radii and electronegativities of constituting chemical elements.

A thorough consideration of the relation between the lattice parameters of 185 binary and ternary spinel compounds, on one side, and ionic radii and electronegativities of the constituting ions, on the other side, allowed for establishing a simple empirical model and finding its linear equation, which links together the above-mentioned quantities. The derived equation gives good agreement betwe...

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ژورنال

عنوان ژورنال: Chemistry – A European Journal

سال: 2016

ISSN: 0947-6539,1521-3765

DOI: 10.1002/chem.201602949