Draw the major product from this reaction. Use wedge and dash bonds to indicate relative stereochemistry where appropriate. Ignore inorganic byproducts. CH2I2, Zn/Cu ether

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Chapter1: Chemical Foundations
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**Problem Statement:**
Draw the major product from this reaction. Use wedge and dash bonds to indicate relative stereochemistry where appropriate. Ignore inorganic byproducts.

**Chemical Reaction Details:**
- Substrate: The structure features an alkene functional group in the center of the molecule chain.

- Reagents and Conditions: 
  - Reagents: CH₂I₂, Zn/Cu
  - Solvent: Ether

**Reaction Type:**
This reaction is a Simmons-Smith reaction, commonly used to convert alkenes to cyclopropanes.

**Expected Outcome:**
The alkene will react with the methylene (CH₂) generated from the reagents to form a cyclopropane ring. The stereochemistry of the resulting cyclopropane should be indicated using wedge and dash bonds.

**Visual Explanation:**
- The substrate structure is an alkene with a double bond present in a straight-chain hydrocarbon.
- Upon reaction, the central double bond will be converted into a three-membered cyclopropane ring, maintaining the carbon skeleton.
Transcribed Image Text:**Problem Statement:** Draw the major product from this reaction. Use wedge and dash bonds to indicate relative stereochemistry where appropriate. Ignore inorganic byproducts. **Chemical Reaction Details:** - Substrate: The structure features an alkene functional group in the center of the molecule chain. - Reagents and Conditions: - Reagents: CH₂I₂, Zn/Cu - Solvent: Ether **Reaction Type:** This reaction is a Simmons-Smith reaction, commonly used to convert alkenes to cyclopropanes. **Expected Outcome:** The alkene will react with the methylene (CH₂) generated from the reagents to form a cyclopropane ring. The stereochemistry of the resulting cyclopropane should be indicated using wedge and dash bonds. **Visual Explanation:** - The substrate structure is an alkene with a double bond present in a straight-chain hydrocarbon. - Upon reaction, the central double bond will be converted into a three-membered cyclopropane ring, maintaining the carbon skeleton.
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