Q.Write the equations for the preparation of 1-iodobutane from
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Start your 14-day free trial to unlock the full solution →Iodine is attached at C1 through three different strategies: direct substitution of a good leaving group (from the alcohol via HI), a Finkelstein halogen exchange (from the chloride), and — since the peroxide/anti-Markovnikov effect works only with HBr, never with HI — a two-step route from the alkene: HBr/peroxide first, then a Finkelstein exchange.
1. From 1-butanol ()
The hydroxyl is protonated by HI, water leaves, and iodide attacks — a straightforward substitution on a primary alcohol.
2. From 1-chlorobutane ()
A Finkelstein reaction: sodium iodide in dry acetone exchanges the chlorine for iodine, with the NaCl byproduct precipitating out and driving the exchange forward.
3. From but-1-ene ()
Direct addition of HI to but-1-ene follows Markovnikov's rule regardless of peroxide, because the peroxide (Kharasch) anti-Markovnikov effect is specific to HBr only — the H–Cl bond is too strong to homolyse under these radical-chain conditions, and with HI the iodine atoms generated preferentially recombine to rather than add to the alkene, so there is no useful anti-Markovnikov pathway for HI at all. Direct HI addition to but-1-ene therefore just gives the Markovnikov product, 2-iodobutane — not the target 1-iodobutane.
The standard route to 1-iodobutane from but-1-ene is two steps, using the halogen the peroxide effect actually works for:
Step 1 — anti-Markovnikov addition of HBr (peroxide effect, genuinely works for HBr):
Step 2 — Finkelstein exchange to swap Br for I: …
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