Q.Assertion (A): Aniline is a stronger base than ammonia.
Reason (R): The unshared electron pair on nitrogen atom in aniline becomes less available for protonation due to resonance.
[Codes (A)-(D) as in the Assertion-Reason instruction.]
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Start your 14-day free trial to unlock the full solution →Aniline is a weaker base than ammonia because the lone pair on nitrogen in aniline is delocalized into the benzene ring via resonance, making it less available for protonation. Therefore, Assertion (A) is false, and Reason (R) is true.
To understand the basicity of amines, we need to consider the availability of the lone pair of electrons on the nitrogen atom. A base, according to the Brønsted-Lowry definition, is a proton acceptor, and according to the Lewis definition, it is an electron pair donor. Therefore, the more readily available the lone pair on nitrogen is to accept a proton (or donate to an acid), the stronger the base.
Factors that increase the electron density on the nitrogen atom or localize the lone pair make it a stronger base. Conversely, factors that decrease the electron density on nitrogen or delocalize the lone pair make it a weaker base.
Let's analyze ammonia and aniline based on these principles.
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Basicity of Ammonia ()
- In ammonia, the nitrogen atom has one lone pair of electrons.
- This lone pair is localized on the nitrogen atom and is readily available for donation to a proton ().
- There are no significant electron-withdrawing or electron-donating groups directly attached to the nitrogen that would extensively delocalize or concentrate this lone pair. Thus, ammonia serves as a reference point for basicity.
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Basicity of Aniline ()
- Aniline consists of an amino () group attached to a benzene ring.
- The nitrogen atom in the amino group also possesses a lone pair of electrons.
- However, this lone pair is in conjugation with the -electron system of the benzene ring. This leads to resonance.
Resonance structures of Aniline:
The lone pair on nitrogen can be delocalized into the benzene ring, as shown by these resonance structures:
NH2 / \ C C // \\ C C \ / C---C (Initial structure with lone pair on N) NH2(+) / \ C C(-) // \\ C C \ / C---C (Lone pair moves into ring, negative charge at ortho position) NH2(+) / \ C C // \\ C(-) C \ / C---C (Negative charge moves to para position) NH2(+) / \ C C(-) // \\ C C \ / C---C (Negative charge moves to other ortho position)- Due to this resonance, the lone pair of electrons on the nitrogen atom is not entirely localized on nitrogen; it is delocalized over the nitrogen and the ortho and para positions of the benzene ring.
- This delocalization makes the lone pair less available for donation to a proton.
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Comparison of Basicity …
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