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Q.In the reaction R−OH+HCl→ZnCl2RCl+H2OR-OH + HCl \xrightarrow{ZnCl_2} RCl + H_2O, what is the correct order of reactivity of alcohol ? (A) 1∘<2∘<3∘1^\circ < 2^\circ < 3^\circ (B) 1∘>3∘>2∘1^\circ > 3^\circ > 2^\circ (C) 1∘>2∘>3∘1^\circ > 2^\circ > 3^\circ (D) 3∘>1∘>2∘3^\circ > 1^\circ > 2^\circ

CBSECBSE Class XII Board 2023MCQ· 1mImportance★★★★★
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The Lucas test (HCl/ZnClX2\ce{HCl/ZnCl2}) proceeds via an SN1\mathrm{S_N1} mechanism for secondary and tertiary alcohols, where carbocation stability governs reactivity: 3∘>2∘>1∘3^\circ > 2^\circ > 1^\circ. The correct order is (A).

Understanding the Lucas Test

The reaction you're looking at is the Lucas test, a classic qualitative test to distinguish between primary, secondary, and tertiary alcohols. The reagent is a mixture of concentrated hydrochloric acid and zinc chloride (ZnClX2\ce{ZnCl2}), which acts as a Lewis acid catalyst.

The key to predicting reactivity lies in understanding how this reaction proceeds. Zinc chloride coordinates with the oxygen of the alcohol, making it a better leaving group. For secondary and tertiary alcohols, the mechanism is predominantly SN1\mathrm{S_N1}: the protonated alcohol loses water to form a carbocation, which then captures chloride ion. For primary alcohols, the mechanism leans toward SN2\mathrm{S_N2} because primary carbocations are too unstable to form.

Since carbocation stability increases in the order 1∘<2∘<3∘1^\circ < 2^\circ < 3^\circ, and the rate-determining step in SN1\mathrm{S_N1} is carbocation formation, tertiary alcohols react fastest, followed by secondary, then primary.


Step-by-Step Analysis

  1. Tertiary alcohols (3∘3^\circ)

    When a tertiary alcohol is treated with Lucas reagent, the −OH\ce{-OH} group is protonated and ZnClX2\ce{ZnCl2} coordinates to facilitate departure of water. The resulting tertiary carbocation (RX3CX+\ce{R3C+}) is highly stable due to hyperconjugation and inductive effects from three alkyl groups. This carbocation forms rapidly, so the reaction is immediate — you see cloudiness (the insoluble alkyl chloride) within seconds at room temperature.

  2. Secondary alcohols (2∘2^\circ)

    Secondary alcohols also proceed via SN1\mathrm{S_N1}, but the secondary carbocation (RX2CHX+\ce{R2CH+}) is less stable than a tertiary one (only two alkyl groups stabilizing the positive charge). The reaction is slower, typically requiring 5–10 minutes of warming to produce visible turbidity.

  3. Primary alcohols (1∘1^\circ) …

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