9.9
Lewis structures are simplified representations of chemical bonds between atoms. Writing Lewis structures for neutral compounds like ethene or ammonia, or for polyatomic ions such as hydronium or phosphate involves the following sequence of steps.
First, calculate the total number of valence electrons in the molecule. Consider ethene, for example. Each carbon atom has 4 valence electrons, and each hydrogen atom has 1 valence electron; with 2 carbon and 4 hydrogen atoms, ethene has a total of 12 valence electrons.
Next, draw the skeletal structure of the molecule. Generally, the first atom in the chemical formula or the less electronegative atom is placed centrally. This atom is also called the central atom and must be able to form at least two bonds.
Hydrogen atoms or more electronegative atoms are positioned terminally around the central atom. Here, the carbon atoms occupy the central positions with hydrogen atoms surrounding them.
The next step is octet completion. First, place a pair of electrons between every two atoms to represent bonding pairs. The remaining electrons are distributed as lone pairs to terminal and central atoms to satisfy the duet or octet configurations. In this case, since hydrogen has reached a duet, the remaining electrons are transferred to the carbon atoms.
Now, use the lone pairs to form multiple bonds between atoms that lack an octet. In ethene, the carbon atoms haven’t reached an octet yet. Therefore, the lone pair is moved to the bonding region to form a double bond allowing all atoms to reach a stable electron configuration.
To write the Lewis structure for charged polyatomic ions like hydronium or phosphate, the same approach is followed, with a modification to accommodate the ionic charge.
To draw the Lewis structure of hydronium, first, calculate the number of valence electrons on the ion. Since the hydronium ion has a positive charge, remove an electron from the total valence electrons, reducing the count to 8. Next, illustrate the molecule by its skeletal structure.
Now place an electron pair between every atom, followed by the lone pair of electrons on the central atom. This way, hydrogen and oxygen atoms satisfy the duet and octet, respectively. Finally, write the Lewis structure in brackets with a positive charge on its upper-right corner.
To draw Lewis structures for complicated molecules and molecular ions, it is helpful to follow a step-by-step procedure as outlined:
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