Q.Rewrite the following reaction by filling the blanks :
• CH3−CH=CH2+HBr→ ....... + ....... (major)(minor)
• (CH3)2C=CHCH3+HBrperoxide ....... + ....... (major)(minor)
• CH3−CH=CH2+HBrperoxide ....... + ....... (major)(minor)
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🔒 Start your 14-day free trial to unlock the full solution →Concept understanding — Preparation and Reactions of Haloalkanes
Preparation and Reactions of Haloalkanes
Preparation of alkyl halides is by: addition of HX to alkenes (Markovnikov); treating alcohols with HX, with PCl3/PCl5, with SOCl2, or with Lucas reagent (ZnCl2/HCl); and free-radical halogenation of alkanes in sunlight. (Direct free-radical chlorination of an alkane is unselective, so it is not the preferred route to a single pure alkyl chloride.) When PCl3 reacts with ethanol the inorganic product is phosphorous acid H3PO3. …
- 2-bromopropane (major) + 1-bromopropane (minor) · 2. 2-bromo-3-methylbutane (major) + 2-bromo-2-methylbutane (min …
- 1. No peroxide — Markovnikov: major CH₃-CHBr-CH₃, minor CH₃CH₂CH₂Br.
- 2. With peroxide — anti-Markovnikov: Br goes to the LESS substituted double-bond carbon (the CH): major (CH₃)₂CH-CHBr-CH₃ (2-bromo-3-methylbutane), minor (CH₃)₂CBr-CH₂-CH₃. …
- Swapping major/minor in the second reaction: with peroxide the Br lands on the …
- CBSE 2025Set ANNUAL1 markMCQQ.Thionyl chloride is -(a) SOCl2(b) SO2Cl2(c) COCl2(d) SOCl3
›Reveal solutionSolution
Thionyl chloride has the formula SOCl2 and is the preferred reagent for converting alcohols into alkyl chlorides.
SOCl2 (thionyl chloride) reacts with an alcohol to give the corresponding chloroalkane, with sulphur dioxide and hydrogen chloride as the only by-products, both of which escape as gases:
R-OH + SOCl2 --(pyridine)--> R-Cl + SO2(g) + HCl(g)
…
- CBSE 2025Set ANNUAL1 markQ.Draw the structure of the major monohalo product: cyclohexanol (cyclohexane ring with an −OH substituent) +SOCl2→?
›Reveal solutionSolution
SOCl2 replaces the –OH of cyclohexanol by –Cl, giving chlorocyclohexane; SO2 and HCl are the by-products.
Cyclohexanol reacts with thionyl chloride (best carried out in the presence of pyridine, which absorbs the HCl formed) by the following overall equation:
C6H11OH+SOCl2pyridineC6H11Cl+SO2↑+HCl↑
Mechanism (briefly): the oxygen of the alcohol attacks the electrophilic sulfur of SOCl2, displacing Cl− and forming an alkyl chlorosulfite ester, C6H11−O−S(=O)−Cl, with loss of HCl. This chlorosulfite is a good leaving group; the chloride ion (released in the same step, or delivered by pyridinium chloride) then displaces it, either from the front side (SNi, retention of configuration, in the absence of a base) or the back side (SN2, inversion, when pyridine is present to remove HCl and free Cl−), giving the monochloro produc …
- CBSE 2024Set ANNUAL1 markQ.Complete the reaction: R-OH + ? → R-Cl + SO2 + HCl.
›Reveal solutionSolution
Thionyl chloride converts an alcohol directly into the corresponding chloroalkane, with both by-products escaping as gases.
The missing reagent is thionyl chloride, SOCl2. This reaction (called Darzens' process) converts an alcohol into the corresponding chloroalkane:
R-OH + SOCl2 → R-Cl + SO2↑ + HCl↑
…
- CBSE 2022Set E1 markMCQQ.The reagent which is used to prepare 1-Bromobutane from Butan-1-ol is(a) CHBr3(b) Br2(c) CH3Br(d) PBr3
›Reveal solutionSolution
Butan-1-ol is converted to 1-bromobutane using PBr3 (3 CH3CH2CH2CH2OH + PBr3 → 3 CH3CH2CH2CH2Br + H3PO3).
Alcohols are converted to alkyl bromides by phosphorus tribromide (PBr3), a standard reagent that replaces the -OH group by -Br:
3 R-OH + PBr3 → 3 R-Br + H3PO3
So for butan-1-ol:
3 CH3CH2CH2CH2OH + PBr3 → 3 CH3CH2CH2CH2Br + H3PO3
- Br2 alone does not convert an alcohol to an alkyl bromide. …
- CBSE 2020Set ANNUAL1 markMCQQ.Conversion of methyl chloride into methyl fluoride is known as _______.(a) Finkelstein reaction(b) Swarts reaction(c) Williamson's synthesis(d) Wurtz reaction
›Reveal solutionSolution
Replacing Cl/Br by F using a metal fluoride is named the Swarts reaction.
In the Swarts reaction, an alkyl chloride or bromide is heated with a metallic fluoride such as AgF, Hg2F2, CoF2 or SbF3; the halogen is exchanged for fluorine because the M–F bond formed is thermodynamically very stable:
CH3Cl+AgF→CH3F+AgCl↓ …
- CBSE 2018Set ANNUAL1 markQ.Explain why thionyl chloride (SOCl2) method is preferred for preparing alkyl chlorides from alcohols.
›Reveal solutionSolution
Thionyl chloride converts alcohols into alkyl chlorides while producing only gaseous by-products, so the product needs no further purification — this is why it (the Darzens procedure) is the preferred laboratory method.
The reaction of an alcohol with thionyl chloride proceeds as:
R−OH+SOCl2pyridineR−Cl+SO2↑+HCl↑
Both by-products, sulphur dioxide (SO2) and hydrogen chloride (HCl), are gases at room temperature, so they escape from the reaction mixture spontaneously, leaving behind only the desired alkyl chloride (with no other solid or liquid contaminant to remove).
This is in contrast to alternative methods:
- R−OH+PCl5→R−Cl+POCl3+HCl — the by-product POCl3 (phosphorus oxychloride) is a liquid that must be separated from the product by distillation. …
- CBSE 2016Set ANNUAL1 markMCQQ.The preparation of alkyl fluoride from alkyl chloride, in presence of metallic fluorides is known as _______.(a) Williamson's reaction(b) Finkelstein reaction(c) Swarts reaction(d) Wurtz reaction
›Reveal solutionSolution
Alkyl chloride + metallic fluoride → alkyl fluoride is the Swarts reaction.
The Swarts reaction is the method by which an alkyl fluoride is prepared by heating an alkyl chloride (or bromide) with a metallic fluoride such as AgF, Hg2F2, CoF2, or SbF3; the halogen exchange occurs because these fluoride …
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