Skip to main content
Ch. 18 - Ketones and Aldehydes
Wade - Organic Chemistry 9th Edition
Wade9th EditionOrganic ChemistryISBN: 9780135213728당신이 사용하는 게 아니라요?교과서 변경
18장, 문제 36c

Predict the major products of the following reactions:
(c)

검증된 단계별 안내
1
Step 1: Identify the reaction type. The reagents used are hydrazine (H₂NNH₂) followed by potassium hydroxide (KOH) and heat. This combination is characteristic of the Wolff-Kishner reduction, which is used to reduce carbonyl groups (such as ketones or aldehydes) to methylene groups (-CH₂-).
Step 2: Analyze the structure of the starting material. The molecule contains a ketone functional group attached to a cyclopentane ring. Additionally, there is a bicyclic structure with two ether groups forming a dioxolane ring.
Step 3: Predict the effect of the Wolff-Kishner reduction. The ketone group will be reduced to a methylene group (-CH₂-) under the reaction conditions, leaving the rest of the molecule unchanged.
Step 4: Consider the stability of the bicyclic dioxolane ring. The reaction conditions (basic medium and heat) are unlikely to affect the ether groups or the dioxolane ring structure, as they are stable under these conditions.
Step 5: Draw the major product. Replace the ketone group in the starting material with a methylene group (-CH₂-) while keeping the bicyclic dioxolane ring and cyclopentane ring intact. This will give the final structure of the major product.

비슷한 문제에 대한 검증된 영상 답변:

이 영상 해법은 위 문제에 도움이 된다고 튜터들이 추천한 것입니다.
영상 길이:
2m

주요 개념

질문에 올바르게 답하기 위해 반드시 이해해야 하는 핵심 개념들은 다음과 같습니다.

Wolff-Kishner Reduction

The Wolff-Kishner reduction is a chemical reaction used to convert carbonyl compounds, such as ketones and aldehydes, into alkanes. This process involves the use of hydrazine (H2NNH2) and a strong base, typically potassium hydroxide (KOH), under heating conditions. The reaction proceeds through the formation of a hydrazone intermediate, which is then deprotonated and loses nitrogen gas, resulting in the formation of the corresponding alkane.
추천 영상:
04:57
Mechanism

Hydrazine and its Role

Hydrazine (H2NNH2) is a powerful reducing agent commonly used in organic synthesis. In the context of the Wolff-Kishner reduction, it reacts with carbonyl compounds to form hydrazones, which are crucial intermediates. The nitrogen atoms in hydrazine facilitate the removal of the carbonyl oxygen, ultimately leading to the formation of alkanes after the elimination of nitrogen gas during the reaction.
추천 영상:
02:49
Ammonia Derivatives

Reaction Conditions

The reaction conditions for the Wolff-Kishner reduction typically involve heating the reaction mixture in the presence of a strong base like KOH. The heat is essential for driving the reaction to completion, as it promotes the elimination of nitrogen gas from the hydrazone intermediate. Understanding the importance of temperature and base strength is crucial for predicting the success and efficiency of the reduction process.
추천 영상:
가이드 코스
1:18
EAS Reactions of Pyridine Example 1