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NEET CHEMISTRYMedium

dπpπd\pi - p\pi bond is present in:

A

CO32CO_{3}^{2-}

B

PO43PO_{4}^{3-}

C

NO3NO_{3}^{-}

D

NO2NO_{2}^{-}

Step-by-Step Solution

The formation of dπpπd\pi - p\pi bonds is determined by the availability of dd-orbitals in the valence shell of the central atom. According to the sources, second-period elements such as Carbon (CC) and Nitrogen (NN) have only four valence orbitals (2s2s and 2p2p) and lack dd-orbitals . As a result, these elements primarily form pπpπp\pi - p\pi multiple bonds with themselves or other second-period elements like Oxygen . This is the case for CO32CO_{3}^{2-}, NO3NO_{3}^{-}, and NO2NO_{2}^{-}. However, third-period elements like Phosphorus (PP) have vacant 3d3d orbitals available for bonding in addition to their ss and pp orbitals . In the phosphate ion (PO43PO_{4}^{3-}), the central phosphorus atom can expand its octet and use its dd-orbitals to overlap with the pp-orbitals of oxygen, resulting in the presence of dπpπd\pi - p\pi bonds.

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