QUESTION IMAGE
Question
draw the correct product for the diels-alder reaction.
Identify the reactants
Identify the diene and dienophile.
- Diene: Cyclopentadiene (a cyclic, conjugated diene).
- Dienophile: Nitroethylene (\(\text{CH}_2=\text{CH}-\text{NO}_2\)), which is an alkene conjugated with an electron-withdrawing nitro group (\(-\text{NO}_2\)).
- This is a classic Conjugation system where the electron-withdrawing group activates the dienophile.
Determine the mechanism
Apply the [4+2] cycloaddition mechanism.
- The three \(\pi\) bonds (two from the diene, one from the dienophile) reorganize in a concerted, cyclic transition state.
- New \(\sigma\) bonds form between the terminal carbons of the diene (C1 and C4) and the carbons of the alkene dienophile.
- The remaining double bond of the diene shifts to the C2-C3 position.
Predict the bicyclic skeleton
Determine the structure of the bridged system.
- Cyclopentadiene forms a bridged bicyclic system: bicyclo[2.2.1]hept-2-ene (norbornene skeleton).
- The one-carbon bridge (\(-\text{CH}_2-\)) points upward.
Determine stereochemistry (Endo vs Exo)
Apply the Alder endo rule.
- The endo product is kinetically favored due to secondary orbital interactions between the \(\pi\) system of the diene and the electron-withdrawing nitro group (\(-\text{NO}_2\)) of the dienophile.
- In the endo product, the nitro group points downwards (away from the one-carbon bridge, cis to the longer bridge).
Finalize the product structure
Combine the skeleton and stereochemical orientation.
- The product is 5-nitrobicyclo[2.2.1]hept-2-ene.
- The nitro group (\(-\text{NO}_2\)) is in the endo position (pointing down/away from the bridgehead carbon).
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The correct product of the Diels–Alder reaction is endo-5-nitrobicyclo[2.2.1]hept-2-ene.
Structure Description:
- Skeleton: A bicyclo[2.2.1]heptene ring system (norbornene skeleton) containing a double bond on one side and a one-carbon bridge pointing up.
- Substituent: A nitro group (\(-\text{NO}_2\)) attached to one of the non-bridgehead \(sp^3\) carbons.
- Stereochemistry: The nitro group must be in the endo position (pointing downwards, away from the one-carbon bridge).