What reagents are needed to accomplish the following transformation? CH3 O 1- Hg(OAc)2, H₂O 2- NaBH4. NaOH O OH- O 1. BH3.THF, 2. HO-, H₂O2, H₂O H3O+ + H₂O CH3 OH

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Question 33
**Title: Identifying Reagents for Organic Transformation**

**Question:**
What reagents are needed to accomplish the following transformation?

**Diagram:**
- Initial structure: A benzene ring with a methyl group (-CH3) attached.
- Resulting structure: A benzene ring with a hydroxymethyl group (-CH2OH) attached.

An arrow indicates the transformation from the initial structure to the resulting structure, with a question mark placed above the arrow.

**Options:**
1. Hg(OAc)₂, H₂O and NaBH₄, NaOH
2. OH⁻
3. BH₃·THF and HO⁻, H₂O₂, H₂O
4. H₃O⁺ + H₂O

**Explanation:**
The task requires selecting the appropriate reagents to convert a methyl group on a benzene ring to a hydroxymethyl group (-CH₂OH). Each option presents different sets of reagents commonly used in organic chemistry that may facilitate various types of chemical transformations. Choosing the right set involves understanding the mechanism through which these reagents interact with the starting compound to yield the desired product.
Transcribed Image Text:**Title: Identifying Reagents for Organic Transformation** **Question:** What reagents are needed to accomplish the following transformation? **Diagram:** - Initial structure: A benzene ring with a methyl group (-CH3) attached. - Resulting structure: A benzene ring with a hydroxymethyl group (-CH2OH) attached. An arrow indicates the transformation from the initial structure to the resulting structure, with a question mark placed above the arrow. **Options:** 1. Hg(OAc)₂, H₂O and NaBH₄, NaOH 2. OH⁻ 3. BH₃·THF and HO⁻, H₂O₂, H₂O 4. H₃O⁺ + H₂O **Explanation:** The task requires selecting the appropriate reagents to convert a methyl group on a benzene ring to a hydroxymethyl group (-CH₂OH). Each option presents different sets of reagents commonly used in organic chemistry that may facilitate various types of chemical transformations. Choosing the right set involves understanding the mechanism through which these reagents interact with the starting compound to yield the desired product.
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