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Intext Questions · 6.4

Q.Among the isomeric alkanes of molecular formula C5H12C_5H_{12}, identify the one that on photochemical chlorination yields

(i) A single monochloride.
(ii) Three isomeric monochlorides.
(iii) Four isomeric monochlorides.
Jharkhand JacTextbookSubjective· 3mImportance★★★★★
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The key idea is that the number of monochloride products from photochemical chlorination equals the number of distinct types of hydrogen atoms in the alkane. For C5H12C_5H_{12}, the isomers are n-pentane (3 types of H → 3 monochlorides), isopentane (4 types of H → 4 monochlorides), and neopentane (1 type of H → 1 monochloride).

Photochemical chlorination of alkanes is a free-radical substitution reaction. At room temperature or with UV light, chlorine molecules break into chlorine radicals, which then abstract a hydrogen atom from the alkane. The resulting alkyl radical quickly reacts with another chlorine molecule to form the alkyl chloride.

The crucial point for isomer counting: each distinct type of hydrogen atom in the starting alkane gives a different monochloride product. Two hydrogen atoms are "equivalent" if replacing either one leads to the same alkyl chloride — this happens when they are attached to the same carbon, or to carbons that are symmetric in the molecule.

So the problem reduces to: for each C5H12C_5H_{12} isomer, how many chemically distinct hydrogen environments exist?

Let’s examine the three structural isomers of pentane.

  1. n-Pentane (straight chain)

    Structure: CH3−CH2−CH2−CH2−CH3CH_3-CH_2-CH_2-CH_2-CH_3

    Label the carbons: C1, C2, C3, C4, C5.

    • C1 and C5 are equivalent (both end methyl groups). Their 6 hydrogens are all identical.
    • C2 and C4 are equivalent (both are CH2CH_2 groups next to an end). Their 4 hydrogens are identical to each other.
    • C3 is the central CH2CH_2 group. Its 2 hydrogens are distinct from the others. So there are 3 types of hydrogen. Chlorination gives 3 monochlorides: 1-chloropentane, 2-chloropentane, and 3-chloropentane.
  2. Isopentane (2-methylbutane)

    Structure:

        CH3
         |
    CH3-CH-CH2-CH3
    

    Number the carbons:

    • C1: the CH3CH_3 attached to the branch point (top methyl).
    • C2: the branch point (CHCH).
    • C3: the CH2CH_2 next to the branch.
    • C4: the terminal CH3CH_3 on the straight chain.
    • C5: the other terminal CH3CH_3 (the one on the branch). Now check equivalence:
    • The three methyl groups are not all equivalent. The one on C4 is attached to a CH2CH_2, while the one on C1 and C5 are attached to a CHCH (the branch point). So C4 methyl is different from C1 and C5.
    • Are C1 and C5 equivalent? Yes — both are methyls on the same branch carbon (C2). Their 6 hydrogens are identical.
    • C3 (CH2CH_2) has 2 hydrogens, distinct from all methyls.
    • C2 (CHCH) has 1 hydrogen, distinct from everything. That gives 4 types: (i) C1/C5 methyl, (ii) C4 methyl, (iii) C3 CH2CH_2, (iv) C2 CHCH. So chlorination yields 4 monochlorides.
  3. Neopentane (2,2-dimethylpropane)

    Structure:

         CH3
         |
    CH3-C-CH3
         | …
    

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