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Question

Q.Which functional groups of glucose interact to form cyclic hemiacetal leading to pyranose structure?
(A) Aldehyde group and hydroxyl group at C-4
(B) Aldehyde group and hydroxyl group at C-5
(C) Ketone group and hydroxyl group at C-4
(D) Ketone group and hydroxyl group at C-5

CBSECBSE Class XII Board 2024MCQ· 1mImportance★★★★★
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Glucose cyclizes when its aldehyde group (C-1) reacts with the hydroxyl group on C-5, forming a six-membered pyranose ring via a hemiacetal linkage. The correct option is (B).

Glucose is an aldohexose — it has an aldehyde group at C-1 and hydroxyl groups on every other carbon. In solution, it doesn't stay as a straight chain. Instead, the aldehyde reacts with one of its own hydroxyl groups to form a cyclic hemiacetal. The key question is: which hydroxyl group attacks?

The ring size depends entirely on which carbon's OH does the attacking. If the OH at C-4 attacks, you get a five-membered ring (furanose). If the OH at C-5 attacks, you get a six-membered ring (pyranose). Glucose overwhelmingly prefers the six-membered pyranose form — and that means the attacking group is the hydroxyl on C-5.

Let's walk through the reasoning step by step.

  1. Identify the reactive groups. Glucose has an aldehyde group at C-1. In the open-chain form, this aldehyde carbon is electrophilic. Any nearby alcohol (OH) can act as a nucleophile and attack it. The product is a hemiacetal — a carbon bonded to both an OH and an OR group.

  2. Which OH is close enough? For a stable ring to form, the attacking OH must be able to reach the aldehyde without excessive strain. In glucose, the OH on C-5 is perfectly positioned to form a six-membered ring (atoms: C-1 through C-5 plus the oxygen bridge). This is the pyranose ring, named after pyran (a six-membered oxygen heterocycle).

  3. What about C-4? The OH on C-4 can also attack, but that gives a five-membered furanose ring. While glucose can form a furanose in small amounts, the pyranose form is far more stable and predominant (over 99% in solution). The question specifically asks about the pyranose structure, so we need the C-5 OH.

  4. Check the options. …

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