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When 2-ethylanthraquinol dissolved in a ...

When 2-ethylanthraquinol dissolved in a mixture of benzene and cyclohexane is oxidised, the product is

A

Ethanol

B

Hydrogen peroxide

C

Anthracene

D

None of these

Text Solution

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The correct Answer is:
To solve the question regarding the oxidation of 2-ethylanthraquinol when dissolved in a mixture of benzene and cyclohexane, we need to follow these steps: ### Step 1: Identify the Structure of 2-Ethylanthraquinol 2-Ethylanthraquinol is a derivative of anthraquinol, which has two hydroxyl (-OH) groups at the 1 and 2 positions of the anthracene structure, along with an ethyl group at the 2 position. ### Step 2: Understand the Oxidation Process Oxidation typically involves the loss of electrons or the addition of oxygen. In this case, the hydroxyl groups (-OH) in 2-ethylanthraquinol can be oxidized to form carbonyl groups (C=O), resulting in the formation of an anthraquinone derivative. ### Step 3: Predict the Product of Oxidation When 2-ethylanthraquinol is oxidized, the hydroxyl groups are converted into carbonyl groups. Therefore, the expected product of the oxidation of 2-ethylanthraquinol is 2-ethylanthraquinone. ### Step 4: Write the Chemical Equation The oxidation can be represented as follows: \[ \text{2-Ethylanthraquinol} \xrightarrow{\text{oxidizing agent}} \text{2-Ethylanthraquinone} \] ### Final Answer The product of the oxidation of 2-ethylanthraquinol in a mixture of benzene and cyclohexane is **2-ethylanthraquinone**. ---

To solve the question regarding the oxidation of 2-ethylanthraquinol when dissolved in a mixture of benzene and cyclohexane, we need to follow these steps: ### Step 1: Identify the Structure of 2-Ethylanthraquinol 2-Ethylanthraquinol is a derivative of anthraquinol, which has two hydroxyl (-OH) groups at the 1 and 2 positions of the anthracene structure, along with an ethyl group at the 2 position. ### Step 2: Understand the Oxidation Process Oxidation typically involves the loss of electrons or the addition of oxygen. In this case, the hydroxyl groups (-OH) in 2-ethylanthraquinol can be oxidized to form carbonyl groups (C=O), resulting in the formation of an anthraquinone derivative. ...
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