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Q.In the reaction benzaldehyde (C6H5CHOC_6H_5CHO) →conc. H2SO4conc. HNO3X\xrightarrow[\text{conc. } H_2SO_4]{\text{conc. } HNO_3} X, the compound XX is

(a) 2-nitrobenzaldehyde
(b) 3-nitrobenzaldehyde
(c) 4-nitrobenzaldehyde
(d) 2,4,6-trinitrobenzaldehyde
Meghalaya MboseMBOSE Meghalaya Intermediate Board 2023MCQ· 1mImportance★★★★★
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−CHO-CHO withdraws electron density from the ring by resonance and induction, making it a deactivating, meta-directing group, so nitration of benzaldehyde gives mainly 3-nitrobenzaldehyde (the meta product).

Directing effect of −CHO-CHO: In electrophilic aromatic substitution, substituents are classified by how they affect electron density at the ortho/para vs meta positions. The carbonyl carbon of −CHO-CHO is electron-deficient (the C=OC=O dipole withdraws electron density from the ring by both the inductive (−I-I) and resonance (−M-M) effects). If the electrophile attacked ortho or para to −CHO-CHO, one resonance structure of the resulting arenium ion would place the positive charge on the ring carbon directly bonded to the already electron-poor carbonyl carbon — a highly destabilized structure. Attack at the meta position avoids this unfavourable resonance form, so the meta arenium-ion intermediate is comparatively more stable and meta substitution dominates.

The reaction:

C6H5CHO→conc. H2SO4conc. HNO3  m-O2N-C6H4-CHO    (3-nitrobenzaldehyde)C_6H_5CHO \xrightarrow[\text{conc. } H_2SO_4]{\text{conc. } HNO_3} \; m\text{-O}_2N\text{-}C_6H_4\text{-CHO} \;\; (\text{3-nitrobenzaldehyde})

Mechanistically, HNO3HNO_3 is protonated by H2SO4H_2SO_4 to generate the electrophile NO2+NO_2^+ (nitronium ion), which attacks the ring; loss of H+H^+ from the resulting arenium ion regenerates aromaticity and gives the meta-substituted product as the major isomer.

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