Predict the major organic product(s) of the following reactions. cat. HAUCI4, H2SO4 aq. MeOH reflux H3CO. cat. HAUCI4, H2SO4 aq. MeOH reflux cat. HAUCI4, H2SO4 aq. MeOH reflux

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**Predict the Major Organic Product(s) of the Following Reactions**

For each of the reactions below, determine the major organic product(s).

1. **First Reaction:**
   - **Reactant:** A benzene ring with an alkyl group (ethyl) and a terminal alkyne group attached to the benzene ring.
   - **Conditions:** Catalytic HAuCl₄, H₂SO₄, in aqueous methanol (aq. MeOH), under reflux.

2. **Second Reaction:**
   - **Reactant:** A methoxybenzene (anisole) with a terminal alkyne group attached.
   - **Conditions:** Catalytic HAuCl₄, H₂SO₄, in aqueous methanol (aq. MeOH), under reflux.

3. **Third Reaction:**
   - **Reactant:** A biphenyl with a terminal alkyne group attached.
   - **Conditions:** Catalytic HAuCl₄, H₂SO₄, in aqueous methanol (aq. MeOH), under reflux.

**Explanation of Diagram**: 
- Each reaction is depicted with its respective starting structure, highlighting the specific functional groups.
- An arrow indicating reaction conditions leads to the space for the anticipated product(s).

These reactions involve the use of a gold catalyst in an acidic medium to drive transformations involving the alkyne functional groups. Consideration of electronic effects, resonance, and steric factors will help predict the products.
Transcribed Image Text:**Predict the Major Organic Product(s) of the Following Reactions** For each of the reactions below, determine the major organic product(s). 1. **First Reaction:** - **Reactant:** A benzene ring with an alkyl group (ethyl) and a terminal alkyne group attached to the benzene ring. - **Conditions:** Catalytic HAuCl₄, H₂SO₄, in aqueous methanol (aq. MeOH), under reflux. 2. **Second Reaction:** - **Reactant:** A methoxybenzene (anisole) with a terminal alkyne group attached. - **Conditions:** Catalytic HAuCl₄, H₂SO₄, in aqueous methanol (aq. MeOH), under reflux. 3. **Third Reaction:** - **Reactant:** A biphenyl with a terminal alkyne group attached. - **Conditions:** Catalytic HAuCl₄, H₂SO₄, in aqueous methanol (aq. MeOH), under reflux. **Explanation of Diagram**: - Each reaction is depicted with its respective starting structure, highlighting the specific functional groups. - An arrow indicating reaction conditions leads to the space for the anticipated product(s). These reactions involve the use of a gold catalyst in an acidic medium to drive transformations involving the alkyne functional groups. Consideration of electronic effects, resonance, and steric factors will help predict the products.
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