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Difference Between Covalency and Oxidation State

March 15, 2018Posted byMadhu

Key Difference – CovalencyvsOxidation State

Atomsof different chemicalelementsare bonded with each other forming different chemical compounds. In the formation of a compound, the atoms are bonded to each other viaionic bonds or covalent bonds. Covalency and oxidation state are two terms that describe the state of these atoms in the chemical compounds. Covalency is the number of covalent bonds that an atom can form. Therefore, the Covalency depends on the number ofelectronsthat atom can share with other atoms. The oxidation state of an atom is the number of electrons gained or lost by a particular atom when forming a chemical bond. Thekey differencebetween Covalency and oxidation state is that theCovalency of an atom is the number of covalent bonds that atom can form whereas oxidation state of an atom is the number of electrons lost or gained by an atom when forming a chemical bond.

CONTENTS

1.Overview and Key Difference
2.What is Covalency
3.What is Oxidation State
4.Side by Side Comparison – Covalency vs Oxidation State in Tabular Form
5.Summary

What is Covalency?

Covalency is the number of covalent bonds that an atom can form with other atoms. Hence, Covalency is determined by the number of electrons present in the outermost orbital of an atom. However, the termsvalencyand Covalency should not be confused because they have different meanings. Valency is the combining power of an atom. Sometimes, the covalency equals to the valency. However, it doesn’t happen always.

Difference Between Covalency and Oxidation State

Figure 01: Some Common Covalent Compounds

A covalent bond is a chemical bond that is formed when two atoms share their outermost unpaired electrons to complete the electron configuration. When an atom has incomplete electron shells or orbitals, that atom becomes more reactive because the incomplete electron configurations are unstable. Therefore, these atoms either gain/loose electrons or share electrons in order to fill up the electron shells. Following table shows some examples of chemical elements with different Covalency values.

Difference Between Covalency and Oxidation State_Figure 03

What is Oxidation State?

Oxidation state of an atom is the number of electrons lost, gained or shared by that atom with another atom. If the electrons are lost or gained, the electrical charge of an atom is changed accordingly. Electrons are negatively charged subatomic particles whose charge is neutralized by the positive charge ofprotonsin that atom. when electrons are lost, the atom gets a positive charge whereas when electrons are gained, atom gets a net negative charge. This happens due to the imbalance of positive charges of the protons in thenucleus. This charge can be given as the oxidation state of that atom.

The oxidation state of an atom is denoted by a whole number with the positive (+) or negative (-) sign. This sign indicates whether the atom has gained or lost electrons. The whole number gives the number of electrons that have been exchanged between atoms.

Key Difference Between Covalency and Oxidation State

Figure 02: Oxidation State of Different Compounds

Determination of Oxidation State of an Atom

The oxidation state of a particular atom can be determined by using the following rules.

  1. The oxidation state of a neutral element is always zero. Ex: Oxidation state of sodium (Na) is zero.
  2. The total charge of the compound should equal to the sum of the charges of each atom present in that compound. Ex: The total charge of KCl is zero. Then the charges of K and Cl should be +1 and -1.
  3. The oxidation state of group 1 element is always +1. The group 1 elements are Lithium, Sodium, Potassium, Rubidium, Cesium and Francium.
  4. The oxidation state of group 2 elements is always +2. The group 2 elements are Beryllium, Magnesium, Calcium, Strontium, Barium and Radium.
  5. The negative charge is given to the atom having a higherelectronegativitythan that of the other atoms bonded to it.
  6. The oxidation state of hydrogen is always +1 except when hydrogen is bonded to a group 1 metal.
  7. The oxidation state of oxygen is -2 except when it is in the form ofperoxideor superoxide.

What is the Difference Between Covalency and Oxidation State?

Covalency vs Oxidation State

Covalency is the number of covalent bonds that an atom can form with other atoms. Oxidation state of an atom is the number of electrons lost, gained or shared by that atom with another atom.
Electrical Charge
Covalency does not indicate the electrical charge of an atom. Oxidation state gives the electrical charge of an atom.
Chemical Bonding
Covalency indicates the number of chemical bonds (covalent bonds) that a particular atom can have. Oxidation state does not give details about the chemical bonds formed by an atom.
State of the Element
Covalency of a pure element depends on the number of electrons present in the outermost electron shell of an atom of that element. 一个纯元素的氧化态总是零。

Summary –CovalencyvsOxidation State

共价和氧化态的原子描述the chemical nature of an atom in a chemical compound. The difference between covalency and oxidation state is that the covalency of an atom is the number of covalent bonds that atom can form whereas oxidation state of an atom is the number of electrons lost or gained by an atom when forming a chemical bond.

Reference:

1.“Covalency.” com, Dictionary.com.Available here
2.“Oxidation state.” Wikipedia, Wikimedia Foundation, 5 Mar. 2018.Available here
3.“Chemistry-Covalency and molecular structures.” com.Available here

Image Courtesy:

1.’Covalent Bonds’By BruceBlaus – Own work,(CC BY-SA 4.0)viaCommons Wikimedia
2.’Oxidation State Assignments’By SARANPHONG YIMKLAN – Own work, (Public Domain) viaCommons Wikimedia

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Filed Under:General ChemistryTagged With:Compare Covalency and Oxidation State,Covalency and Oxidation State Differences,Covalency and Oxidation State Similarities,Covalency State,Covalency State Charge,Covalency State Chemical Bonding,Covalency State Definition,Covalency State Element,Covalency vs Oxidation State,Determination of Oxidation State of an Atom,oxidation state,Oxidation State Charge,Oxidation State Chemical Bonding,Oxidation State Definition,Oxidation State Element

About the Author:Madhu

Madhu is a graduate in Biological Sciences with BSc (Honours) Degree and currently persuing a Masters Degree in Industrial and Environmental Chemistry. With a mind rooted firmly to basic principals of chemistry and passion for ever evolving field of industrial chemistry, she is keenly interested to be a true companion for those who seek knowledge in the subject of chemistry.

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