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Acetic anhydride reacts with diethyl ether in the presence of anhydrous AlCl₃ to give
  • a)
    CH₃COOCH₃
  • b)
    CH₃CH₂COOCH₃
  • c)
    CH₃COOCH₂CH₃
  • d)
    CH₃CH₂OH
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
Acetic anhydride reacts with diethyl ether in the presence of anhydrou...
Reaction Overview:
The reaction between acetic anhydride and diethyl ether in the presence of anhydrous AlCl3 results in the formation of a specific product.

Mechanism of the Reaction:
- Acetic anhydride (CH3CO)2O reacts with diethyl ether (CH3CH2OCH2CH3) in the presence of anhydrous AlCl3.
- The AlCl3 acts as a Lewis acid catalyst, facilitating the reaction between the two compounds.
- The reaction proceeds through an acylation mechanism, where one of the ethyl groups from diethyl ether is transferred to acetic anhydride.
- This leads to the formation of ethyl acetate (CH3COOCH2CH3) as the major product.

Product Formation:
The product formed in this reaction is ethyl acetate (CH3COOCH2CH3), which is a colorless liquid commonly used as a solvent in various chemical reactions.

Correct Answer Justification:
- Among the options provided, option 'c' (CH3COOCH2CH3) corresponds to ethyl acetate, which is the expected product of the reaction between acetic anhydride and diethyl ether in the presence of anhydrous AlCl3.
- Therefore, the correct answer is option 'c' (CH3COOCH2CH3).
In conclusion, the reaction between acetic anhydride and diethyl ether in the presence of anhydrous AlCl3 leads to the formation of ethyl acetate as the product. This reaction mechanism involves the use of a Lewis acid catalyst to facilitate the acylation process.
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Acetic anhydride reacts with diethyl ether in the presence of anhydrous AlCl to givea)CHCOOCHb)CHCHCOOCHc)CHCOOCHCHd)CHCHOHCorrect answer is option 'C'. Can you explain this answer?
Question Description
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