Which of the following are the major deuterated products of the reaction below? (1) B2De, diglyme (2) H202, NAOH/H20 HO, HO, HO, (D) HO, (A) (B) (C) Compounds A and C Compmunds B and D Compounds A and D O Compounds A and B

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Chapter1: Chemical Foundations
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**Question:**

Which of the following are the major deuterated products of the reaction below?

**Reaction Details:**

The reaction involves a cyclic alkene undergoing a two-step process.  
1. Reactants: B\(_2\)D\(_6\), diglyme  
2. Reactants: H\(_2\)O\(_2\), NaOH/H\(_2\)O  

The reaction converts the alkene to a deuterated alcohol, where deuterium (D) is a hydrogen isotope. The products feature variations in the position of the deuterium and hydroxyl (OH) groups.

**Possible Products:**
- **Compound A:** Deuterium and hydroxyl group are on the same carbon atom.
- **Compound B:** Deuterium on one carbon, hydroxyl on the adjacent carbon (trans configuration).
- **Compound C:** Deuterium on one carbon, hydroxyl on the adjacent carbon (cis configuration).
- **Compound D:** Deuterium and hydroxyl group on adjacent carbons (trans configuration).

**Options:**
- Compounds A and C
- Compounds B and D
- Compounds A and D
- Compounds A and B

**Answer:**
Compounds B and D (selected option).
Transcribed Image Text:**Question:** Which of the following are the major deuterated products of the reaction below? **Reaction Details:** The reaction involves a cyclic alkene undergoing a two-step process. 1. Reactants: B\(_2\)D\(_6\), diglyme 2. Reactants: H\(_2\)O\(_2\), NaOH/H\(_2\)O The reaction converts the alkene to a deuterated alcohol, where deuterium (D) is a hydrogen isotope. The products feature variations in the position of the deuterium and hydroxyl (OH) groups. **Possible Products:** - **Compound A:** Deuterium and hydroxyl group are on the same carbon atom. - **Compound B:** Deuterium on one carbon, hydroxyl on the adjacent carbon (trans configuration). - **Compound C:** Deuterium on one carbon, hydroxyl on the adjacent carbon (cis configuration). - **Compound D:** Deuterium and hydroxyl group on adjacent carbons (trans configuration). **Options:** - Compounds A and C - Compounds B and D - Compounds A and D - Compounds A and B **Answer:** Compounds B and D (selected option).
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