Draw the products of the two step reaction sequence shown below. Ignore inorganic byproducts. If the reaction results in a mixture of ortho and para isomers, draw only the para-product. Cl2 (1 equiv) FeCl3 Select to Draw

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**Title:** Aromatic Halogenation Reaction

**Instructions:**
Draw the products of the two-step reaction sequence shown below. Ignore inorganic byproducts. If the reaction results in a mixture of ortho and para isomers, draw only the para-product.

**Reactant:**

- **Structure:** Benzene ring

**Reaction Conditions:**

- **Reagents:** Cl₂ (1 equivalent), FeCl₃

**Product:**

- The area labeled "Select to Draw" is where you should illustrate the para-product.

**Explanation:**
In this electrophilic aromatic substitution reaction, benzene reacts with chlorine in the presence of ferric chloride (FeCl₃), which acts as a catalyst. The reaction will produce chlorobenzene, primarily resulting in the para-isomer due to the stability of the para position in such reactions. To complete this task, focus on adding a chlorine atom to the para position of the benzene ring.
Transcribed Image Text:**Title:** Aromatic Halogenation Reaction **Instructions:** Draw the products of the two-step reaction sequence shown below. Ignore inorganic byproducts. If the reaction results in a mixture of ortho and para isomers, draw only the para-product. **Reactant:** - **Structure:** Benzene ring **Reaction Conditions:** - **Reagents:** Cl₂ (1 equivalent), FeCl₃ **Product:** - The area labeled "Select to Draw" is where you should illustrate the para-product. **Explanation:** In this electrophilic aromatic substitution reaction, benzene reacts with chlorine in the presence of ferric chloride (FeCl₃), which acts as a catalyst. The reaction will produce chlorobenzene, primarily resulting in the para-isomer due to the stability of the para position in such reactions. To complete this task, focus on adding a chlorine atom to the para position of the benzene ring.
Expert Solution
Step 1: given

Substrate: Benzene molecule

Reagents: Cl2 ( one equivalents. ) in presence of FeCl3

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