Skip to content
NCERT Exemplar · Q7

Q.Arrange the following hydrogen halides in order of their decreasing reactivity with propene.

(i) HCl > HBr > HI
(ii) HBr > HI > HCl
(iii) HI > HBr > HCl
(iv) HCl > HI > HBr
Punjab PsebMCQ· 1mImportance★★★★★est
51% · 46/90 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 →

The reactivity of hydrogen halides with propene follows the bond dissociation enthalpy trend: weaker H–X bonds react faster. The correct order is HI > HBr > HCl, which corresponds to option (iii).

The question asks about the reactivity of hydrogen halides (HCl, HBr, HI) with propene — an electrophilic addition reaction. This is not about the stability of the final product, but about how fast each HX adds across the double bond.

The key concept is that the rate-determining step in electrophilic addition is the proton transfer from HX to the alkene, forming a carbocation. The ease of this step depends on how readily the H–X bond breaks. The bond dissociation enthalpy (BDE) of H–X decreases down the group: H–Cl (431 kJ/mol), H–Br (366 kJ/mol), H–I (298 kJ/mol). A weaker bond breaks more easily, so HI donates a proton fastest.

Watch out

A common mistake is to confuse reactivity with the stability of the product. The addition of HI is fastest, but the product (2-iodopropane) is less stable than the chloro or bromo analogue. Reactivity and product stability are separate ideas.

Let’s walk through the reasoning step by step.

  1. Identify the reaction type. Propene (CHX3CH=CHX2\ce{CH3CH=CH2}) is an unsymmetrical alkene. With HX, it undergoes electrophilic addition following Markovnikov’s rule: the hydrogen adds to the carbon with more hydrogens, giving 2-halopropane as the major product. The mechanism begins with the π\pi bond attacking the H of HX.

  2. Focus on the rate-determining step. The first step — protonation of the double bond — is slow. The H–X bond must break heterolytically: H−X→HX++XX−\ce{H-X -> H+ + X-}. The easier this bond breaks, the faster the reaction. …

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.