Q.Haloalkanes contain halogen atom(s) attached to the hybridised carbon atom of an alkyl group. Identify haloalkane from the following compounds. (Two or more than two options may be correct.)
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Start your 14-day free trial to unlock the full solution →A haloalkane needs both halves of the stated definition: the halogen on an carbon, and that carbon belonging to an alkyl group (a group derived from an alkane). 2-Bromopentane and trichloromethane satisfy both. Vinyl chloride fails the first half (the Cl is on an alkene carbon), and 2-chloroacetophenone fails the second half (its carbon is but sits on a ketone carbonyl — the compound is an α-halo ketone, not a halogen derivative of an alkane). The correct options are (i) and (iv).
The question's own opening line is the definition to apply: "Haloalkanes contain halogen atom(s) attached to the hybridised carbon atom of an alkyl group." Notice that this is a two-part test — hybridisation AND the kind of group the carbon belongs to. An alkyl group is obtained from an alkane by removing one hydrogen; it contains only carbons and hydrogens, with no double bonds, rings of the aromatic type, or other functional groups built into it.
Let us examine each option against both parts.
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2-Bromopentane
The structure is . The bromine is on C2 of a plain saturated pentane chain: the carbon is (four single bonds) and the group it belongs to is a genuine alkyl group. Both conditions pass — a textbook haloalkane.
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Vinyl chloride (chloroethene)
The structure is . The chlorine is attached to a carbon of the C=C double bond — an carbon. The very first condition fails; compounds of this kind are vinylic halides, a class of their own with quite different (much lower) reactivity toward substitution. Not a haloalkane.
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2-Chloroacetophenone
Acetophenone is , numbered with C1 = the carbonyl carbon and C2 = the methyl carbon, so "2-chloro" places the chlorine on the side-chain carbon: (phenacyl chloride). That carbon is — but look at what it is attached to: a ketone carbonyl. It is part of the phenacyl (α-keto) framework of an aromatic ketone, not of a group derived from an alkane. The compound's parent is a ketone, and its class is α-halo ketone — its chemistry (activated toward substitution by the adjacent C=O) is taught with carbonyl compounds, not with haloalkanes. It passes the hybridisation half of the test but fails the "alkyl group" half, so it is not counted a haloalkane. …
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