Ionic radii (Shannon) for tetrahedral M(V) ion

These are Shannon ionic radii.

Image showing periodicity of the chemical elements for ionic radii (Shannon) for tetrahedral M(V) ion in a circular periodic table heatscape style.
Image showing periodicity of the chemical elements for ionic radii (Shannon) for tetrahedral M(V) ion in a spiral periodic table heatscape style.
Image showing periodicity of the chemical elements for ionic radii (Shannon) for tetrahedral M(V) ion in a 3D spiral periodic table column style in which the height of the column is proportional to the property.
Image showing periodicity of the chemical elements for ionic radii (Shannon) for tetrahedral M(V) ion in a 3D spiral periodic table column style in which the height of the column is proportional to the property.
Image showing periodicity of the chemical elements for ionic radii (Shannon) for tetrahedral M(V) ion in a 3D spiral periodic table column style in which the height of the column is proportional to the property.
Image showing periodicity of the chemical elements for ionic radii (Shannon) for tetrahedral M(V) ion in a 3D spiral periodic table column style in which the height of the column is proportional to the property. The only differences between this picture and that above are the colours of the background and the base.

Units

pm

Notes

The "effective ionic radii" quoted here assume that the ionic radius of F- is 133 pm and that of O2- is 140 pm.

Values depend upon the coordination number and for d-block metals whether or not the metal is in a high or low spin state.

Older "crystal ionic radii" are based upon a radius of six-coordinate F- = 119 pm and are 14-18% larger than effective ionic radii.

You can look at visual representations of the data for different coordination and oxidation numbers using the following links,

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