9.14
A metallic bond is a bond between two metal atoms. Compared to nonmetals, metals have low ionization energies, allowing them to lose valence electrons easily. This gives the metallic bond distinct properties in contrast to ionic and covalent bonds.
Metallic bonds and most of their properties can be explained using the simple electron sea model. Consider the metal potassium. Due to the low ionization energy, each potassium atom can easily lose its valence electron to become a cation.
These potassium cations are held together in close-packing because of their attraction to the negatively charged sea of electrons. These electrons are not confined to any single ion but are evenly distributed and relatively free to move within the metal.
The electron sea model accounts for several important characteristics of metals. For example, when a voltage difference is applied to a metal wire, like copper wire, the negatively charged electrons move freely towards the wire’s positive end, generating an electric current. This is why most metals are excellent conductors of electricity.
In contrast, ionic compounds are nonconductors of electricity in their solid form but can conduct electricity w
Metallic bonds are formed between two metal atoms. A simplified model to describe metallic bonding has been developed by Paul Drüde called the “Electr…
Copyright © 2026 MyJoVE Corporation. All rights reserved.