Increase in attraction as size of cation decreases

In summary, as the size of a metal cation decreases, the covalent character of the formed molecule increases. This is due to the change in electron configuration, causing an increase in charge density at the nucleus and a stronger attraction between the electron cloud and the nucleus. This leads to a higher covalent character in the formed molecule.
  • #1
Lakshya
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We explain that as the size of metal cation decreases, the covalent character of the formed molecule increases. The reason given is that as the size decreases, the electron cloud is attracted more towards it as charge density is increased.

Now, if I assume metal cation to be uniformly charged sphere, then I can show from Gauss Law that no matter what is the radius of cation, the field outside at a particular distance from centre remains same. Moreover, if I don't consider it to be uniformly distributed, how can I be sure that the field will increase as size is decreased?
 
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  • #2
The answer to this is that the size of a metal cation is not necessarily a uniform charge distribution, but instead depends on the electron configuration of the metal. As the size of the metal cation decreases, the electron configuration changes and thus the charge density increases at the nucleus. This increase in charge density causes an increase in the attraction of the electron cloud to the nucleus, resulting in an increase in the covalent character of the formed molecule.
 

1. What is the cause of the increase in attraction as the size of a cation decreases?

The increase in attraction is due to the decrease in atomic radius of the cation. As the size of the cation decreases, the positive charge becomes more concentrated, resulting in a stronger attraction between the cation and surrounding negative ions.

2. How does the increase in attraction affect the properties of the cation?

The increase in attraction can lead to a higher melting and boiling point, as well as a higher charge density. This can also affect the reactivity and solubility of the cation in various compounds.

3. Is the increase in attraction the only factor that affects the properties of cations?

No, there are other factors such as the charge and electron configuration of the cation that can also impact its properties. However, the increase in attraction is a significant factor in determining the properties of cations.

4. How does the increase in attraction impact the ionic radii of cations?

The increase in attraction causes the ionic radii of cations to decrease. This is because the positive charge of the cation pulls the surrounding negative ions closer, resulting in a smaller distance between the cation and anion.

5. Are there any exceptions to the trend of increased attraction as cation size decreases?

Yes, there are some exceptions to this trend. For example, in transition metals, there can be variations in the atomic radius due to the presence of d-orbitals. Additionally, the presence of multiple charges on the cation can also affect the trend of increased attraction.

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