9.12
The octet rule explains chemical bonding in main group compounds by predicting that each atom reaches an 8-electron configuration. However, there are three major exceptions to this rule.
The first exception is odd-electron species. Most molecules and ions have an even number of electrons. However, certain molecules, called radicals, have one or more unpaired electrons. Radicals with an odd number of unpaired electrons cannot achieve octets.
The superoxide anion, a radical with one unpaired electron, has 13 valence electrons. It can be represented by two contributing structures where one oxygen has only seven electrons and thus cannot reach an octet.
The second exception is atoms that form an incomplete octet. For instance, hydrogen, helium, and lithium tend to reach a duet, whereas elements of group 2 and 13, like beryllium and boron, often form molecules with four and six electrons around them, respectively.
Consider aluminum chloride, which has 24 valence electrons. While all chlorine atoms reach the octet, aluminum gets only 6 valence electrons — an incomplete octet.
Although aluminum chloride is stable, it reacts with molecules like ammonia that have an unshared pair of electro
Many covalent molecules have central atoms that do not have eight electrons in their Lewis structures. These molecules fall into three categories:
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