Skip to content
Question

Q.Pyranose ring of glucose is formed due to the reaction between : (A) C1C_1 and C3C_3 (B) C1C_1 and C5C_5 (C) C1C_1 and C4C_4 (D) C1C_1 and C2C_2

CBSECBSE Class XII Board 2025MCQ· 1mImportance★★★★★
🔒 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 →

Glucose cyclizes when its aldehyde group (C1C_1) reacts with the hydroxyl on C5C_5, forming a six-membered pyranose ring. The answer is (B).

Why glucose forms a ring

Glucose exists predominantly as a cyclic structure in solution, not as the open-chain aldehyde you might first draw. This happens because the hydroxyl groups within the same molecule can attack the carbonyl carbon, forming a stable ring through intramolecular hemiacetal formation.

The name "pyranose" tells you the ring size: it comes from pyran, a six-membered ring containing five carbons and one oxygen. When glucose forms this ring, it creates a structure analogous to pyran.

Understanding the cyclization mechanism

In the open-chain form of D-glucose, you have:

  • An aldehyde group at C1C_1 (the carbonyl carbon)
  • Hydroxyl groups at C2C_2, C3C_3, C4C_4, and C5C_5

For a stable ring to form, the hydroxyl oxygen needs to be positioned close enough in space to attack the electrophilic carbonyl carbon. The question is: which hydroxyl?

Step-by-step ring formation

  1. The nucleophilic attack

    The hydroxyl group on C5C_5 acts as a nucleophile and attacks the carbonyl carbon at C1C_1. This is geometrically favorable because when you draw the chain in its extended zigzag form and allow rotation around single bonds, the C5C_5 hydroxyl can easily reach C1C_1.

  2. Hemiacetal formation

    The attack converts the aldehyde into a hemiacetal:

R−CHO+RX′−OH→R−CH(OH)−O−RX′\ce{R-CHO + R'-OH -> R-CH(OH)-O-R'}

Here, the oxygen from the C5C_5 hydroxyl becomes part of the ring, and the former carbonyl carbon (C1C_1) now bears both an −OH\ce{-OH} group and is bonded to the ring oxygen.

  1. The six-membered ring

    Count the atoms in the ring: C1C_1, C2C_2, C3C_3, C4C_4, C5C_5, and the oxygen (originally from the C5C_5 hydroxyl). That's six atoms total—a pyranose ring.

  2. The anomeric carbon

    C1C_1 becomes the anomeric carbon, a new chiral center. The newly formed hydroxyl can be either axial (α-anomer) or equatorial (β-anomer) in the chair conformation. …

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.