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Q.Racemisation occurs in (A) SN1S_N1 reaction (B) SN2S_N2 reaction (C) Neither SN1S_N1 nor SN2S_N2 reaction (D) SN2S_N2 reaction as well as SN1S_N1 reaction

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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Racemisation occurs when a chiral centre is converted to a planar intermediate that can be attacked from either face, producing both enantiomers. This happens in SN1S_N1 reactions through a planar carbocation intermediate.

The question asks us to identify which substitution mechanism leads to racemisation—the formation of a 50:50 mixture of enantiomers from an optically active starting material.

To understand this, we need to examine what happens at the chiral centre during each mechanism.

Understanding the SN1S_N1 Mechanism

In an SN1S_N1 reaction, the mechanism proceeds in two distinct steps:

  1. Formation of a carbocation intermediate

    The leaving group departs first, creating a carbocation. This is the rate-determining step (hence "1" in SN1S_N1—the rate depends only on the substrate concentration).

  2. Nucleophilic attack on the carbocation

    Here's the crucial point: a carbocation is sp2sp^2 hybridised and planar. The three substituents lie in a plane, with an empty pp-orbital perpendicular to that plane.

When the nucleophile approaches this planar carbocation, it can attack from either the front face or the back face with equal probability. If the starting material was a pure enantiomer (say, RR-configuration), attack from one side regenerates the RR-enantiomer while attack from the other side produces the SS-enantiomer.

The result? A racemic mixture—equal amounts of both enantiomers. This is racemisation.

Note

In practice, SN1S_N1 reactions often show partial racemisation with some inversion predominating, because the leaving group may still be nearby when the nucleophile attacks, slightly blocking one face. But the theoretical expectation is complete racemisation.

Understanding the SN2S_N2 Mechanism

The SN2S_N2 mechanism is fundamentally different:

  1. Single concerted step

    The nucleophile attacks from the backside (opposite to the leaving group) in a single step. There is no intermediate.

  2. Inversion of configuration

    Because the attack must occur from the back, the stereochemistry at the chiral centre is inverted—like an umbrella flipping inside-out. This is called Walden inversion. …

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