Skip to content
Question of 147

Q.Write the structures of the major products of the following reactions:

(i) CH3–CH2–CH=CH2+HCl→CH_3\text{--}CH_2\text{--}CH=CH_2 + HCl \rightarrow ?
(ii) CH3CH2Br+NaI→CH_3CH_2Br + NaI \rightarrow ?
(iii) cyclohexyl bromide (a six-membered ring with a -Br substituent) +Mg→+ Mg \rightarrow ? OR What happens when chlorobenzene (a benzene ring with a -Cl substituent) reacts with the following (Give equations only):
(i) CH3ClCH_3Cl in presence of anhydrous AlCl3AlCl_3;
(ii) conc. HNO3HNO_3 and conc. H2SO4H_2SO_4;
(iii) Na and RX in the presence of dry ether?
Meghalaya MboseMBOSE Meghalaya Intermediate Board 2021Subjective· 3mImportance★★★★★
0% · 0/147 Questions
🔒 Locked · start free trial →

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 →

But-1-ene adds HCl by Markovnikov's rule; ethyl bromide undergoes halogen exchange with NaI (Finkelstein); and cyclohexyl bromide with Mg gives the Grignard reagent. (Alternative: chlorobenzene undergoes Friedel–Crafts alkylation, nitration, and the Wurtz–Fittig coupling.)

(i) CH3–CH2–CH=CH2+HClCH_3\text{--}CH_2\text{--}CH=CH_2 + HCl:

Addition of HX to an unsymmetrical alkene follows Markovnikov's rule: H adds to the carbon already bearing more hydrogens (the terminal =CH2=CH_2), and Cl adds to the more substituted carbon (via the more stable secondary carbocation intermediate):

CH3CH2CH=CH2+HCl→CH3CH2–CHCl–CH3 (2-chlorobutane)CH_3CH_2CH=CH_2 + HCl \rightarrow CH_3CH_2\text{--}CHCl\text{--}CH_3\ (\text{2-chlorobutane})

(ii) CH3CH2Br+NaICH_3CH_2Br + NaI:

This is the Finkelstein reaction (typically run in dry acetone), where a less reactive alkyl chloride/bromide is converted to the more reactive alkyl iodide, driven by precipitation of NaBr (insoluble in acetone):

CH3CH2Br+NaI→dry acetoneCH3CH2I+NaBr↓CH_3CH_2Br + NaI \xrightarrow{\text{dry acetone}} CH_3CH_2I + NaBr\downarrow

(iii) Cyclohexyl bromide + Mg:

Alkyl/cycloalkyl halides react with magnesium metal in dry ether to form Grignard reagents:

C6H11Br+Mg→dry etherC6H11MgBr (cyclohexylmagnesium bromide)C_6H_{11}Br + Mg \xrightarrow{\text{dry ether}} C_6H_{11}MgBr\ (\text{cyclohexylmagnesium bromide})

Alternative (Or): Reactions of chlorobenzene

(i) With CH3ClCH_3Cl in the presence of anhydrous AlCl3AlCl_3 (Friedel–Crafts alkylation) — the −Cl-Cl on the ring is a weak deactivator but still o,p-directing, giving a mixture (mainly the para isomer, sterically favoured):

C6H5Cl+CH3Cl→Anhy. AlCl3o-&p-chlorotoluene+HClC_6H_5Cl + CH_3Cl \xrightarrow{\text{Anhy. }AlCl_3} o\text{-} \& p\text{-chlorotoluene} + HCl

…

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.