Question
Question: The correct order of increasing \( C - O \) bond length in \( CO \) , \( C{O_2} \) and \( CO_3^{2 - ...
The correct order of increasing C−O bond length in CO , CO2 and CO32− is:
A) CO32−<CO2<CO
B) CO<CO2<CO32−
C) CO32−<CO<CO2
D) CO=CO2=CO32−
Solution
Bond length is defined as the average distance between nuclei of two bonded atoms in a molecule. Bond length depends upon the bond order. Generally it is approximately equal to the sum of covalent radii of two atoms.
Complete step by step answer:
We know bond length is the average distance between the nuclei of two atoms that are bonded together with a bond. Bond order affects the bond length between two atoms. More will be the value of bond order, smaller will be the bond length. Bond order is calculated by taking the ratio of total number of bonds to the total number of canonical forms. Canonical forms are the resonating structures of a molecule which are formed by the delocalization of charge. Structure of CO32− is:
There will be resonance in this structure. Charge on oxygen atoms will keep on moving. As shown in the pictures:
These are the resonating structures of CO32− . We know bond order is the ratio of number of bonds to resonating structures. In CO32− total bonds are 4 and resonating structures are 3 . Therefore bond order of CO32− is:
Bond order =34=1.33
Structure of CO2 is:
Since there is no charge there will be no other resonating structure of CO2 . This has only one structure. So bond order will be the ratio of total number of bonds to the total number of bonding molecules. Number of bonds in CO2 are 4 and the number of bonding molecules is 2 . So the bond order will be:
Bond order =24=2
Structure of CO is:
Like CO2 , CO also does not possess any charge. This means CO also has only one structure. Number of bonds in CO is 3 and the number of bonding molecules is 1 . So the bond order will be:
Bond order =13=3
As we know more the value of bond order less will be the bond length. Among given molecules bond order for CO is highest this means bond length of CO will be least and for CO32− value of bond order is least this means bond length of CO32− will be the greatest. Therefore order for bond length will be CO<CO2<CO32−
So the correct answer is option B that is CO<CO2<CO32− .
Note:
Like bond length, bond angle is also different for different molecules. For the formation of bond angles there must be at least three atoms and two bonds. Bond angle is the angle which is formed between three atoms across at least two bonds.