Q.Elimination reactions (especially β-elimination) are as common as the nucleophilic substitution reaction in case of alkyl halides. Specify the reagents used in both cases.
You're viewing a preview — the full solution, concept, methods & PYQ mapping are locked.
Start your 14-day free trial to unlock the full solution →The key idea is that elimination reactions (E1/E2) and nucleophilic substitution reactions (SN1/SN2) compete when alkyl halides react with bases/nucleophiles. The reagent choice determines which pathway dominates: strong bulky bases favour elimination, while good nucleophiles favour substitution.
Understanding the Competition
Alkyl halides can undergo two fundamental reaction types when treated with a base or nucleophile. In nucleophilic substitution, the nucleophile attacks the carbon bearing the halogen, replacing it. In β-elimination, the base abstracts a proton from the carbon adjacent to the halogen (the β-carbon), leading to formation of a double bond and loss of the halide ion.
The reagent — its strength as a base versus a nucleophile, its size, and the reaction conditions — is the primary factor that decides which path is taken.
Step-by-Step Breakdown
-
Identify the core difference between substitution and elimination reagents.
Substitution requires a good nucleophile — a species that attacks carbon centres effectively. Elimination requires a strong base — a species that abstracts protons. Many reagents can do both, but their relative strength in each role matters.
-
Reagents for nucleophilic substitution (SN1 and SN2).
- SN2 (one-step, backside attack): Needs a strong nucleophile and a good leaving group. Common reagents:
- , (in water or alcohol) — hydroxide is a strong nucleophile.
- , — cyanide ion.
- , — thiolates.
- , amines — for alkylation.
- (e.g., NaI in acetone) — iodide is an excellent nucleophile.
- SN1 (two-step, carbocation intermediate): Favoured by weak nucleophiles and polar protic solvents. Reagents:
- (hydration to alcohol).
- (alcohols, e.g., ethanol).
- (acetic acid).
- These are poor nucleophiles but good solvents that stabilise the carbocation.
- SN2 (one-step, backside attack): Needs a strong nucleophile and a good leaving group. Common reagents:
-
Reagents for β-elimination (E1 and E2).
- E2 (one-step, concerted): Requires a strong base, often bulky to favour elimination over substitution. Common reagents:
- (potassium tert-butoxide) — very bulky, strong base, poor nucleophile.
- , (in ethanol, at higher temperatures) — strong base.
- (sodium amide) — very strong base.
- (sodium ethoxide) — strong base, but also a good nucleophile; elimination favoured with heat.
- E1 (two-step, carbocation intermediate): Favoured by weak bases and polar protic solvents, similar to SN1. Reagents:
- , — weak bases that can act as bases in the second step.
- Often occurs under solvolysis conditions (e.g., heating with ethanol).
- E2 (one-step, concerted): Requires a strong base, often bulky to favour elimination over substitution. Common reagents:
-
The critical factor: base strength vs. nucleophilicity.
A reagent like is both a strong base and a strong nucleophile. Whether it causes substitution or elimination depends on other factors:
- Temperature: Higher temperatures favour elimination (entropically favoured).
- Substrate structure: Primary halides favour SN2; tertiary halides favour E2/E1.
- Solvent: Polar aprotic solvents (e.g., DMSO, acetone) boost nucleophilicity for SN2; polar protic solvents (e.g., water, ethanol) favour SN1/E1.
- Concentration: Higher base concentration favours elimination.
A quick rule of thumb: Strong base + bulky = elimination (e.g., ). Strong nucleophile + small = substitution (e.g., ). Weak base/nucleophile + polar protic solvent = SN1/E1 (e.g., ).
- Specific reagent examples for clarity.
Reagent Role Favoured Reaction Reason in acetone Strong nucleophile, weak base SN2 Iodide is an excellent nucleophile but a very weak base.
Unlock everything free for 14 days
- Full step-by-step solutions
- Concept-first explanations
- Methods, shortcuts & mistakes
- PYQ mapping + timed mock tests
Full access for 14 days. No credit card required.