Q.An organic compound with the molecular formula C6H10O forms 2,4-DNP derivative, reduces Tollens' reagent and undergoes Cannizzaro reaction. On vigorous oxidation it gives 1,2-benzenedicarboxylic acid. Identify the compound and write down its above chemical reactions. [the molecular-formula subscript was faint/blurred in the scan; transcribed as best-faith reading C6H10O, but the described chemistry (an aromatic aldehyde oxidising to 1,2-benzenedicarboxylic acid) suggests it may actually be C8H8O — see report]
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Start your 14-day free trial to unlock the full solution →The clues (2,4-DNP positive, Tollens' positive, undergoes Cannizzaro = no alpha-H, oxidises to phthalic acid) together identify the compound as o-tolualdehyde (2-methylbenzaldehyde) — note the given formula C6H10O does not fit an aromatic compound at all, so the best-faith identification uses the flagged alternative reading C8H8O.
Note on the transcribed formula: the stem's molecular formula was flagged in transcription as faint/blurred. Checked against the degree-of-unsaturation formula, DoU = (2×6+2−10)/2 = 2 for C6H10O — far too few double-bond-equivalents to contain even one benzene ring (a ring alone needs 4 DoU), which is inconsistent with the chemistry described (oxidation to 1,2-benzenedicarboxylic acid, an aromatic diacid). The alternative reading noted in transcription, C8H8O, gives DoU = (2×8+2−8)/2 = 5 — exactly right for one benzene ring (4 DoU) plus one C=O (1 DoU). This solution proceeds on that best-faith basis.
Identifying the compound:
- Forms a 2,4-DNP derivative → has a carbonyl group (aldehyde or ketone).
- Reduces Tollens' reagent (gives a silver mirror) → the carbonyl is specifically an aldehyde.
- Undergoes the Cannizzaro reaction → this self-disproportionation (one molecule oxidised to acid, another reduced to alcohol, under conc. NaOH) only occurs for an aldehyde that has NO alpha-hydrogen — true of aromatic aldehydes where –CHO is bonded directly to the ring (like benzaldehyde), since there is no enolisable alkyl C–H adjacent to the carbonyl.
- On vigorous oxidation gives 1,2-benzenedicarboxylic acid (phthalic acid) → the ring must carry TWO oxidisable groups in an ortho (1,2) relationship, one of which is the aldehyde itself (–CHO → –COOH on oxidation) and the other a methyl group ortho to it (–CH3 → –COOH on vigorous oxidation).
All four clues point to o-Tolualdehyde (2-methylbenzaldehyde), C8H8O: a benzaldehyde with a –CH3 substituent ortho to the –CHO group.
Its reactions:
- 2,4-DNP test: o-Tolualdehyde + 2,4-dinitrophenylhydrazine (acidic) → orange/yellow hydrazone precipitate. …
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