Question:

Pericyclic reactions involved in the synthesis of Vitamin D\(_2\) from Ergosterol are 

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In pericyclic reactions, the 6 \( \pi \) electrocyclic ring opening is common in the formation of important biologically active compounds like Vitamin D\(_2\).
Updated On: Sep 8, 2025
  • 6 \( \pi \) electrocyclic ring opening followed by [1,7] sigmatropic shift
  • [1,5] sigmatropic shift followed by 6 \( \pi \) electrocyclic ring opening
  • [3,3] sigmatropic rearrangement followed by [1,7] sigmatropic shift
  • 4 \( \pi \) electrocyclization followed by 6 \( \pi \) electrocyclic ring opening
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The Correct Option is A

Solution and Explanation

Step 1: Understanding the pericyclic reactions.
The transformation involves a series of pericyclic reactions, including electrocyclic ring opening and sigmatropic shifts. In this case, the correct mechanism involves the following steps:
1. A 6 \( \pi \) electrocyclic ring opening leads to the formation of an intermediate.
2. A [1,7] sigmatropic shift then occurs to complete the transformation.
Step 2: Conclusion.
The pericyclic reactions that occur in the synthesis of Vitamin D\(_2\) from Ergosterol are correctly described by option (A), with a 6 \( \pi \) electrocyclic ring opening followed by a [1,7] sigmatropic shift.
Final Answer: \[ \boxed{\text{6 } \pi \text{ electrocyclic ring opening followed by [1,7] sigmatropic shift.}} \]
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