Chemistry · Ch 3 — Classification of Elements and Periodicity in Properties
(a) Periodicity of Valence or Oxidation States
(a) Periodicity of Valence or Oxidation States
Periodicity of Valence or Oxidation States
Valence is the most characteristic property of an element. For representative (s- and p-block) elements, the valence is usually equal to either the number of electrons in the outermost shell or eight minus that number. This dual possibility exists because an atom can either lose/gain electrons to achieve a noble gas configuration or share electrons to complete its octet.
The term "oxidation state" is now used more frequently than "valence" in modern chemistry. Oxidation state is a formal charge assigned to an atom based on electronegativity considerations.
Defining Oxidation State
Consider two oxygen-containing compounds: and . The electronegativity order of the elements involved is .
In : Fluorine has the outer configuration . Being the most electronegative element, each fluorine atom is assigned oxidation state . Oxygen () shares two electrons with the two fluorine atoms, so it exhibits oxidation state .
In : Oxygen is more electronegative than sodium. It accepts two electrons (one from each sodium atom) and shows oxidation state . Sodium () loses one electron to oxygen and is assigned oxidation state .
Definition of Oxidation State
The oxidation state of an element in a particular compound is the charge acquired by its atom on the basis of electronegativity considerations from other atoms in the molecule.
Problem 3.8 in Section 3.7.2's Problems group below predicts the formulas of silicon–bromine and aluminium–sulphur compounds from these group valences.
Periodic Trends in Valence: Hydrides and Oxides
Table 3.9 shows the periodic trends in valence as demonstrated by the formulas of hydrides and oxides across groups 1, 2, and 13–18.
| Group | 1 | 2 | 13 | 14 | 15 | 16 | 17 |
|---|---|---|---|---|---|---|---|
| Formula of hydride | LiH, NaH, KH | , | , , , | , , | , , , | HF, HCl, HBr, HI |
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