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Question 87 of 87

Q.(i) Give reasons :

(a) HCHO is more reactive than CH3CH_3-CHO towards addition of HCN.
(b) pKa of O2N−CH2−COOHO_2N-CH_2-COOH is lower than that of CH3−COOHCH_3-COOH.
(c) Alpha hydrogen of aldehydes & ketones is acidic in nature.
(ii) Give simple chemical tests to distinguish between the following pairs of compounds :
(a) Ethanal and Propanal
(b) Pentan-2-one and Pentan-3-one OR
(i) Write structure of the product(s) formed :
(a) CH3−CH2−COOH→Cl2, red phosphorusCH_3-CH_2-COOH \xrightarrow{Cl_2,\ \text{red phosphorus}}
(b) C6H5COCl→H2, Pd−BaSO4C_6H_5COCl \xrightarrow{H_2,\ Pd-BaSO_4}
(c) 2HCHO→Conc.KOH2HCHO \xrightarrow{\text{Conc.KOH}}
(ii) How will you bring the following conversions in not more than two steps :
(a) Propanone to propene
(b) Benzyl chloride to phenyl ethanoic acid
Haryana BsehCBSE Class XII Board 2018Subjective· 5mImportance★★★★★
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(i) HCHO more reactive (no +I/steric alkyl); nitroacetic acid more acidic (–I of NO2NO_2); α\alpha-H acidic due to enolate resonance. (ii) iodoform distinguishes ethanal/pentan-2-one from propanal/pentan-3-one. OR: HVZ, Rosenmund, Cannizzaro products + two conversions.

Concept. Reactivity, acidity and characteristic tests of carbonyl compounds and carboxylic acids — CBSE Class-12 aldehydes-ketones-and-carboxylic-acids.

(i) Reasons.

  1. In nucleophilic addition of HCN, the nucleophile attacks the carbonyl carbon. In HCHOHCHO there is no alkyl group, whereas CH3CHOCH_3CHO has a methyl group that (i) donates electrons (+I effect), lowering the carbon's positive character, and (ii) sterically hinders attack. So HCHO is more reactive.
  2. The −NO2-NO_2 group is strongly electron-withdrawing (–I). In O2N-CH2-COOHO_2N\text{-}CH_2\text{-}COOH it stabilises the conjugate base (carboxylate) by dispersing its negative charge, so the acid ionises more readily — lower pKa (stronger acid) than CH3COOHCH_3COOH, whose CH3CH_3 is electron-donating.
  3. The α\alpha-hydrogen is acidic because, on its removal, the resulting carbanion is stabilised by resonance with the adjacent carbonyl group (delocalisation onto oxygen — the enolate ion).

(ii) Distinguishing tests.

(a) Ethanal vs propanal: Ethanal (CH3CHOCH_3CHO) has a CH3-CO-CH_3\text{-CO-} group and gives a positive iodoform test (yellow precipitate of CHI3CHI_3 with I2I_2/NaOH); propanal (CH3CH2CHOCH_3CH_2CHO) does not.

(b) Pentan-2-one vs pentan-3-one: Pentan-2-one, CH3-CO-CH2CH2CH3CH_3\text{-CO-}CH_2CH_2CH_3, is a methyl ketone and gives a positive iodoform test; pentan-3-one, CH3CH2-CO-CH2CH3CH_3CH_2\text{-CO-}CH_2CH_3, has no CH3-CO-CH_3\text{-CO-} group and is iodoform-negative.

OR — Alternative.

(i) Products:

(a) HVZ reaction: CH3CH2COOH→Cl2/red PCH3-CHCl-COOHCH_3CH_2COOH \xrightarrow{Cl_2/\text{red P}} CH_3\text{-CHCl-}COOH (2-chloropropanoic acid).

(b) Rosenmund reduction: C6H5COCl→H2, Pd-BaSO4C6H5CHOC_6H_5COCl \xrightarrow{H_2,\,Pd\text{-}BaSO_4} C_6H_5CHO (benzaldehyde) + HCl. …

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