Q.Addition of water to alkynes occurs in acidic medium and in the presence of ions as a catalyst. Which one of the following products will be formed on addition of water to but-1-yne under these conditions?
Hydration of a terminal alkyne follows Markovnikov’s rule via an enol intermediate that tautomerises to a ketone. For but-1-yne, the product is butan-2-one, option (ii).
The reaction you’re looking at is acid-catalysed hydration of alkynes — a classic way to make carbonyl compounds from alkynes. The key is that the addition of water follows Markovnikov’s rule, and the initial product is an enol, which immediately rearranges to a more stable keto form (keto-enol tautomerism).
For a terminal alkyne like but-1-yne, the triple bond is between C1 and C2. The catalyst coordinates to the triple bond, making it more electrophilic. Water attacks the more substituted carbon of the triple bond — that’s Markovnikov addition. Let’s trace it step by step.
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Identify the structure of but-1-yne
But-1-yne is . The triple bond is between carbon 1 (terminal) and carbon 2.
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Markovnikov addition of water
In the presence of and , water adds such that the group ends up on the more substituted carbon of the triple bond.
The two carbons of the triple bond:
- C1 (terminal, less substituted — attached to one H)
- C2 (internal, more substituted — attached to an ethyl group) So the goes to C2, and the H goes to C1. This gives an enol:
- Keto-enol tautomerism That enol is unstable. It tautomerises: the hydrogen shifts to the terminal carbon, and the double bond moves to become a at C2. The result is:
That’s butan-2-one (also called methyl ethyl ketone).
- Check the options
- (i) Butanal — that would come from anti-Markovnikov addition, not happening here.
- (ii) Butan-2-one — matches our product.
- (iii) A hydroxy-aldehyde — not formed; tautomerism gives a ketone, not an aldehyde.
- (iv) Butan-2-ol — that’s an alcohol, not a carbonyl; hydration of alkynes gives carbonyls, not alcohols.
A common mistake is to think that hydration of a terminal alkyne gives an aldehyde. That only happens with borane followed by oxidation (hydroboration-oxidation), which is anti-Markovnikov. With , it’s always Markovnikov → ketone.
For any terminal alkyne , hydration with always gives (a methyl ketone). No exceptions.
The correct option is (ii), butan-2-one ().
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