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Q.Assertion (A) : p-nitroaniline is a weaker base than p-toluidine. Reason (R) : The electron withdrawing effect of −NO2-NO_2 group in p-nitroaniline makes it a weaker base. Select the correct answer from the codes given below : (A) Both Assertion (A) and Reason (R) are true and Reason (R) is the correct explanation of the Assertion (A). (B) Both Assertion (A) and Reason (R) are true, but Reason (R) is not the correct explanation of the Assertion (A). (C) Assertion (A) is true, but Reason (R) is false. (D) Assertion (A) is false, but Reason (R) is true.

CBSECBSE Class XII Board 2024MCQ· 1mImportance★★★★★
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p-nitroaniline is a weaker base than p-toluidine because the electron-withdrawing −NO2-NO_2 group decreases electron density on the nitrogen, while the electron-donating −CH3-CH_3 group increases it. Both Assertion (A) and Reason (R) are true, and Reason (R) correctly explains Assertion (A).

The basicity of an amine is determined by the availability of the lone pair of electrons on its nitrogen atom for donation to a proton (H+H^+). A compound is a stronger base if its nitrogen atom can more readily donate its lone pair. This availability is influenced by the electronic effects of substituents attached to the amine group.

Electron-donating groups (EDGs) increase the electron density on the nitrogen, making the lone pair more available and thus increasing basicity. Electron-withdrawing groups (EWGs) decrease the electron density on the nitrogen, making the lone pair less available and thus decreasing basicity.

Let's analyze the given compounds:

  1. Analyze p-nitroaniline:

    • p-nitroaniline has a nitro group (−NO2-NO_2) at the para position relative to the amino group (−NH2-NH_2).
    • The nitro group is a strong electron-withdrawing group. It exhibits both a negative inductive effect (−I-I) and a strong negative mesomeric effect (−M-M).
    • The −M-M effect is particularly significant when the nitro group is conjugated with the amino group, as it is in p-nitroaniline. The −NO2-NO_2 group pulls electron density away from the benzene ring, and this effect is transmitted to the amino nitrogen.
    • This withdrawal of electron density makes the lone pair on the nitrogen of the amino group less available for donation to a proton.
    • Therefore, p-nitroaniline is expected to be a weaker base.
  2. Analyze p-toluidine:

    • p-toluidine has a methyl group (−CH3-CH_3) at the para position relative to the amino group (−NH2-NH_2).
    • The methyl group is an electron-donating group. It exhibits a positive inductive effect (+I+I) and also an electron-donating effect through hyperconjugation.
    • These effects push electron density towards the benzene ring, and this increased electron density is transmitted to the amino nitrogen.
    • This increases the electron density on the nitrogen of the amino group, making its lone pair more available for donation to a proton.
    • Therefore, p-toluidine is expected to be a stronger base.
  3. Compare p-nitroaniline and p-toluidine:

    • Comparing the two, p-nitroaniline has a strong electron-withdrawing group (−NO2-NO_2), while p-toluidine has an electron-donating group (−CH3-CH_3). …

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