OsO4 and NMO B. Br2 and H20 C. Hg(OAc)2, H2O and NaBH4, NaOH D. RCO3H E. BH3-THF and H2O2, NaOH Which reagent will complete this reaction?

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A. OsO4 and NMO B. Br2 and H20 C. Hg(OAc)2, H2O and NaBH4, NaOH D. RCO3H E. BH3-THF and H2O2, NaOH Which reagent will complete this reaction?
The image displays a chemical reaction diagram illustrating the conversion of a cyclohexanone to a cyclohexanol.

1. **Top Structure**: Cyclohexanone
   - This is represented by a hexagonal (six-membered) ring with a double-bonded oxygen (carbonyl group) attached, signifying a ketone.

2. **Middle Section (Red Box)**: 
   - Represents a reaction step where reagents and conditions would typically be specified. The presence of the dotted line box likely indicates a placeholder for these details, such as a reducing agent or reaction conditions.

3. **Arrow**: 
   - A downward arrow signifies the direction of the reaction from the starting material to the product.

4. **Bottom Structure**: Cyclohexanol
   - This structure shows a hexagonal ring with an alcohol group (–OH) attached, indicating the reduction of the ketone to an alcohol.

This type of reaction is commonly a reduction process, such as the reduction of a ketone to an alcohol using reagents like sodium borohydride (NaBH₄) or lithium aluminum hydride (LiAlH₄).
Transcribed Image Text:The image displays a chemical reaction diagram illustrating the conversion of a cyclohexanone to a cyclohexanol. 1. **Top Structure**: Cyclohexanone - This is represented by a hexagonal (six-membered) ring with a double-bonded oxygen (carbonyl group) attached, signifying a ketone. 2. **Middle Section (Red Box)**: - Represents a reaction step where reagents and conditions would typically be specified. The presence of the dotted line box likely indicates a placeholder for these details, such as a reducing agent or reaction conditions. 3. **Arrow**: - A downward arrow signifies the direction of the reaction from the starting material to the product. 4. **Bottom Structure**: Cyclohexanol - This structure shows a hexagonal ring with an alcohol group (–OH) attached, indicating the reduction of the ketone to an alcohol. This type of reaction is commonly a reduction process, such as the reduction of a ketone to an alcohol using reagents like sodium borohydride (NaBH₄) or lithium aluminum hydride (LiAlH₄).
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Ans) BH3 and H2O2, NaOH 

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