આ MCQ મોડ્યુલ આના પર આધારિત છે: Carboxylic Acid Reactions
Carboxylic Acid Reactions
આ મૂલ્યાંકન આના પર આધારિત હશે: Carboxylic Acid Reactions
મૂલ્યાંકન બનાવવામાં તેમની સામગ્રી સામેલ કરવા ચિત્રો, PDF અથવા Word દસ્તાવેજ અપલોડ કરો.
Carboxylic Acid Reactions
8.9 Chemical Reactions of Carboxylic Acids L3
The reactions of -COOH cluster into four groups depending on which bond breaks:
- O–H bond cleaved — salt formation, ester formation, anhydride formation, conversion to acyl chloride (with PCl3, PCl5, SOCl2).
- Whole –COOH replaced — reduction to alcohol, decarboxylation.
- Substitution on the α-carbon — HVZ halogenation.
- Substitution on the ring (for aromatic acids) — electrophilic substitution.
8.9.1 Reactions Involving Cleavage of O–H Bond
(a) Salt formation — distinguishes acids from phenols
RCOOH + NaHCO3 → RCOONa + H2O + CO2↑
Phenols dissolve in NaOH but not in NaHCO3 — so the NaHCO3 "fizz" test confirms a carboxylic acid.
(b) Esterification with alcohols (Fischer esterification)
Acid-catalysed reversible reaction. To push equilibrium right, use excess alcohol or remove water (Dean-Stark trap).
(c) Acid anhydride formation
(d) Conversion to acyl halides with PCl3, PCl5, SOCl2
RCOOH + PCl5 → RCOCl + POCl3 + HCl
RCOOH + SOCl2 → RCOCl + SO2↑ + HCl↑
SOCl2 is preferred — the by-products are gases and escape, so the acyl chloride is easily purified.
8.9.2 Reactions Involving the –COOH (or –CO) Group
(a) Reduction to 1° alcohols
LiAlH4 reduces –COOH all the way to –CH2OH. Diborane (B2H6) is also effective and is selective — it leaves nitro, halo, ester groups intact.
(b) Decarboxylation — loss of CO2
Sodium salts of carboxylic acids, on heating with soda-lime (NaOH+CaO), lose CO2 to give an alkane (carbon count − 1):
Kolbe's electrolysis:
Example: electrolysis of CH3COONa solution gives ethane.
8.9.3 Substitution on the α-Carbon — HVZ Reaction
Hell-Volhard-Zelinsky (HVZ) reaction: acids that have an α-H react with Cl2 or Br2 in the presence of a small amount of red phosphorus to give α-haloacids.
The α-haloacid is a synthetic gateway — KCN gives α-cyanoacids, NH3 gives α-aminoacids, OH⁻ gives α-hydroxyacids.
8.9.4 Substitution in the Ring (Aromatic Acids)
The –COOH group is electron-withdrawing and meta-directing. So benzoic acid undergoes electrophilic substitution (nitration, sulphonation, halogenation) slowly and gives the meta product as the major isomer.
Friedel-Crafts alkylation/acylation does not work on benzoic acid — the COOH deactivates the ring strongly and also coordinates AlCl3.
8.10 Uses of Carboxylic Acids L1
- Methanoic acid — leather processing, rubber coagulation, medicines for treating muscle pain.
- Ethanoic acid — vinegar (5–8 % in water), industrial solvent, manufacture of cellulose acetate fibres and white lead pigments.
- Hexanedioic acid — monomer for Nylon-6,6.
- Esters of benzoic acid — perfumes; sodium benzoate is a food preservative.
- Higher fatty acids — Na/K salts make soaps; Mg/Ca salts make greases and lubricants.
- Aspirin = acetylsalicylic acid — analgesic, anti-inflammatory, antipyretic.
Setup: Acetic acid is treated with four separate reagents: (a) PCl5, (b) LiAlH4, (c) NaHCO3, (d) Br2 + red P, (e) ethanol/H2SO4.
- (a) CH3COCl + POCl3 + HCl — O–H cleavage / acyl chloride formation.
- (b) CH3CH2OH — reduction of -COOH all the way to 1° alcohol.
- (c) CH3COONa + H2O + CO2↑ — salt formation (NaHCO3 test, fizz).
- (d) BrCH2COOH — HVZ α-bromination.
- (e) CH3COOC2H5 + H2O — Fischer esterification.
Interactive: Carboxylic Acid Reagent Matcher
Choose a reagent acting on acetic acid; the simulator predicts the product class.
What is obtained when sodium acetate is (a) heated with soda-lime, (b) electrolysed in concentrated aqueous solution?
(a) Soda-lime (NaOH + CaO) Δ: decarboxylation gives methane (CH4) + Na2CO3.
(b) Kolbe electrolysis: acetate ions discharged at the anode lose CO2 and dimerise → ethane (C2H6); H2 evolves at cathode.
How would you prepare 2-chlorobutanoic acid from butanoic acid in the lab?
Hell-Volhard-Zelinsky reaction. Treat butanoic acid with Cl2 in presence of a small amount of red P:
CH3CH2CH2COOH + Cl2 → CH3CH2CHCl-COOH + HCl
Red P generates a small amount of PCl3 in situ, which converts a trace of the acid to the acyl chloride; the acyl chloride enolises and is chlorinated at α-C; halogen-exchange with another acid molecule then frees the α-chloroacid.
Intext Practice L3
Write the structures of the products obtained when (i) phenol reacts with acetic anhydride, (ii) salicylic acid reacts with acetic anhydride in presence of H2SO4.
(i) Phenyl acetate (CH3COO-C6H5).
(ii) Acetylsalicylic acid (aspirin) — the phenolic OH of salicylic acid is acetylated to give 2-acetoxybenzoic acid.
Competency-Based Questions
Assertion–Reason Questions
Options: (A) Both A & R true; R correct explanation of A. (B) Both true; R not correct explanation. (C) A true, R false. (D) A false, R true.
A1. SOCl2 is preferred over PCl5 for preparing an acyl chloride from an acid.
R2. The by-products of the SOCl2 reaction (SO2, HCl) escape as gases, leaving a clean acyl chloride.
A2. Kolbe electrolysis of sodium acetate yields ethane.
R2. Acetate ions are discharged at the anode, each losing one CO2 to give methyl radicals which couple to form ethane.
A3. Benzoic acid does not give Friedel-Crafts acylation.
R3. The –COOH group activates the benzene ring toward electrophilic substitution.
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