Hint 2: Think about a group you could put on the ring easily (SO3H) and pull off easily, which might DIRECT your chlorine molecule to the correct Meta-Position. Read about how the SO3H group is attached and removed (You will find the answer)! -Zack
Hint 2: Think about a group you could put on the ring easily (SO3H) and pull off easily, which might DIRECT your chlorine molecule to the correct Meta-Position. Read about how the SO3H group is attached and removed (You will find the answer)! -Zack
Reduction of a ketone by Sn/HCl? I'm not aware of that transformation. Certainly the nitro group would be reduced (SnCl2 being the standard of course).
Oops, you are right. I was crediting the poster with a Clemmensen reduction.
There were several errors in this scheme. I was seeking a contribution from the poster rather than giving a route. I agree with those that have posted the steps and reagents need to be revised to get the indicated product.
Hint: Step 1, Friedel-Crafts acylation with propionyl chloride. Step 2 is not nitration.
Reduction of a ketone by Sn/HCl? I'm not aware of that transformation. Certainly the nitro group would be reduced (SnCl2 being the standard of course).
Oops, you are right. I was crediting the poster with a Clemmensen reduction.
There were several errors in this scheme. I was seeking a contribution from the poster rather than giving a route. I agree with those that have posted the steps and reagents need to be revised to get the indicated product.
Hint: Step 1, Friedel-Crafts acylation with propionyl chloride. Step 2 is not nitration.
Reduction of a ketone by Sn/HCl? I'm not aware of that transformation. Certainly the nitro group would be reduced (SnCl2 being the standard of course).
Reduction of a ketone by Sn/HCl? I'm not aware of that transformation. Certainly the nitro group would be reduced (SnCl2 being the standard of course).
No, check step 3.
No, check step 3.
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-Zack
-Zack
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Oops, you are right. I was crediting the poster with a Clemmensen reduction.
There were several errors in this scheme. I was seeking a contribution from the poster rather than giving a route. I agree with those that have posted the steps and reagents need to be revised to get the indicated product.
Hint: Step 1, Friedel-Crafts acylation with propionyl chloride.
Step 2 is not nitration.
Oops, you are right. I was crediting the poster with a Clemmensen reduction.
There were several errors in this scheme. I was seeking a contribution from the poster rather than giving a route. I agree with those that have posted the steps and reagents need to be revised to get the indicated product.
Hint: Step 1, Friedel-Crafts acylation with propionyl chloride.
Step 2 is not nitration.
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@pico: check if your substituents onrient the additional reaction into the right positions
@pico: check if your substituents onrient the additional reaction into the right positions
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Did you mean propyl chloride instead of the acyl chloride?
Did you mean propyl chloride instead of the acyl chloride?
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Why give such a convoluted scheme to say what is wrong when most of it is wrong.
Why not just make chlorobenzene: Cl2 and FeCl2, FC acylation, then reduce carbonyl.
Why give such a convoluted scheme to say what is wrong when most of it is wrong.
Why not just make chlorobenzene: Cl2 and FeCl2, FC acylation, then reduce carbonyl.
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So I would go Benzene.... Propylbenzen....seperate 4-Nitro 1- propylbenzene from ortho.... Reduction to Amine and Sandmeyer HNO2CuCl
So I would go Benzene.... Propylbenzen....seperate 4-Nitro 1- propylbenzene from ortho.... Reduction to Amine and Sandmeyer HNO2CuCl
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The Nitration will be meta directing for EAS.
No reduction given for the carbonyl to yield the alkane.
The Sn/HCl may reduce the Nitro to an aniline which then can be converted to a Cl through Sandmeyer.
Zach is on the right track. Sulfonate, add chloride, remove sulfonate through hydrolysis, perform EAS (para directing) then reduce carbonyl.
The Nitration will be meta directing for EAS.
No reduction given for the carbonyl to yield the alkane.
The Sn/HCl may reduce the Nitro to an aniline which then can be converted to a Cl through Sandmeyer.
Zach is on the right track. Sulfonate, add chloride, remove sulfonate through hydrolysis, perform EAS (para directing) then reduce carbonyl.
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What is the purpose of sulfonation? You can make chlorobenzene from benzene in one step.
What is the purpose of sulfonation? You can make chlorobenzene from benzene in one step.
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Two questions. Do Friedel-Craft acylation reactions work on deactivated benzene rings? How can you get para substitution with nitration and acylation?
Two questions. Do Friedel-Craft acylation reactions work on deactivated benzene rings? How can you get para substitution with nitration and acylation?
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