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Exercises · 9.4

Q.Arrange the following:

(i) In decreasing order of the pKb values:
C2H5NH2C_2H_5NH_2, C6H5NHCH3C_6H_5NHCH_3, (C2H5)2NH(C_2H_5)_2NH and C6H5NH2C_6H_5NH_2
(ii) In increasing order of basic strength:
C6H5NH2C_6H_5NH_2, C6H5N(CH3)2C_6H_5N(CH_3)_2, (C2H5)2NH(C_2H_5)_2NH and CH3NH2CH_3NH_2
(iii) In increasing order of basic strength:
(a) Aniline, p-nitroaniline and p-toluidine.
(b) C6H5NH2C_6H_5NH_2, C6H5NHCH3C_6H_5NHCH_3, C6H5CH2NH2C_6H_5CH_2NH_2.
(iv) In decreasing order of basic strength in gas phase:
C2H5NH2C_2H_5NH_2, (C2H5)2NH(C_2H_5)_2NH, (C2H5)3N(C_2H_5)_3N and NH3NH_3
(v) In increasing order of boiling point:
C2H5OHC_2H_5OH, (CH3)2NH(CH_3)_2NH, C2H5NH2C_2H_5NH_2
(vi) In increasing order of solubility in water:
C6H5NH2C_6H_5NH_2, (C2H5)2NH(C_2H_5)_2NH, C2H5NH2C_2H_5NH_2.
Yanam BieapTextbookSubjective· 5mImportance★★★★★
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Basicity of amines depends on the balance between inductive effects, resonance, solvation, and steric hindrance. pKb is inversely related to basic strength (lower pKb = stronger base). The answers are: (i) C6H5NH2>C6H5NHCH3>C2H5NH2>(C2H5)2NHC_6H_5NH_2 > C_6H_5NHCH_3 > C_2H_5NH_2 > (C_2H_5)_2NH; (ii) C6H5NH2<C6H5N(CH3)2<CH3NH2<(C2H5)2NHC_6H_5NH_2 < C_6H_5N(CH_3)_2 < CH_3NH_2 < (C_2H_5)_2NH; (iii)(a) p-nitroaniline < aniline < p-toluidine; (iii)(b) C6H5NH2<C6H5NHCH3<C6H5CH2NH2C_6H_5NH_2 < C_6H_5NHCH_3 < C_6H_5CH_2NH_2; (iv) (C2H5)3N>(C2H5)2NH>C2H5NH2>NH3(C_2H_5)_3N > (C_2H_5)_2NH > C_2H_5NH_2 > NH_3; (v) (CH3)2NH<C2H5NH2<C2H5OH(CH_3)_2NH < C_2H_5NH_2 < C_2H_5OH; (vi) C6H5NH2<(C2H5)2NH<C2H5NH2C_6H_5NH_2 < (C_2H_5)_2NH < C_2H_5NH_2.


The Core Idea: What Makes an Amine Basic?

Basicity in amines comes from the lone pair on nitrogen being available to accept a proton. Anything that increases electron density on nitrogen makes it a stronger base (lower pKb). Anything that decreases it (by withdrawing electrons or delocalising the lone pair) makes it weaker (higher pKb).

Three main factors compete:

  1. Inductive effect – Alkyl groups push electrons toward nitrogen, making it more basic. More alkyl groups = stronger base, but only in the gas phase.
  2. Resonance / Delocalisation – If the lone pair is part of a conjugated system (like in aniline), it's less available for protonation, drastically lowering basicity.
  3. Solvation & Steric Hindrance – In water, the protonated ammonium ion is stabilised by hydrogen bonding. Bulky groups around nitrogen hinder solvation, reducing stability of the conjugate acid, and thus lowering basic strength in solution.
Watch out

A common mistake is to assume that more alkyl groups always mean stronger base in water. In aqueous solution, the order for aliphatic amines is usually: 2∘>1∘>3∘>NH32^\circ > 1^\circ > 3^\circ > NH_3 — because of the solvation effect. In the gas phase, the order follows purely inductive effects: 3∘>2∘>1∘>NH33^\circ > 2^\circ > 1^\circ > NH_3.


(i) Decreasing order of pKb values

pKb is the negative logarithm of the base dissociation constant. Higher pKb = weaker base. So we need to arrange from weakest base (highest pKb) to strongest base (lowest pKb).

Step 1: Identify the compounds

  • C2H5NH2C_2H_5NH_2 – ethylamine (1° aliphatic)
  • C6H5NHCH3C_6H_5NHCH_3 – N-methylaniline (2° aromatic)
  • (C2H5)2NH(C_2H_5)_2NH – diethylamine (2° aliphatic)
  • C6H5NH2C_6H_5NH_2 – aniline (1° aromatic)

Step 2: Compare aromatic vs aliphatic

Aromatic amines are much weaker bases than aliphatic ones because the lone pair on nitrogen is delocalised into the benzene ring. So aniline and N-methylaniline will have higher pKb (weaker) than ethylamine and diethylamine.

Step 3: Within aromatic amines

N-methylaniline has an electron-donating methyl group on nitrogen, which slightly increases electron density compared to aniline. So aniline is weaker (higher pKb) than N-methylaniline.

Step 4: Within aliphatic amines

In water, diethylamine (2°) is a stronger base than ethylamine (1°) due to better inductive effect, but the solvation effect is less severe for 2° than for 3°. So diethylamine has lower pKb than ethylamine.

Step 5: Arrange from highest to lowest pKb …

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