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Starting with benzene and any other reagents you need, show how you would synthesize the compound shown here. (Hint: Consider a Pd-catalyzed coupling for the final step).

Short Answer

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Formation of acetophenone

Formation of 3-chloro acetophenone

Formation of the desired product

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01

Formation of 3-chloro acetophenone

In the presence of aluminum chloride, an acyl chloride reacts with benzene to give acetophenone. This reaction is known as Friedel crafts acylation reaction. Keto group is meta director so incoming electrophile attacks meta to keto group. The formed acetophenone undergoes chlorination (electrophilic substitution reaction) to give 3-chloroacetophenone.

Formation of acetophenone

Formation of 3-chloro acetophenone

02

Formation of the desired product

The heck coupling reaction is a palladium-catalyzed cross-coupling reaction in which alkyl halide reacts with an alkene to give the substituted product in a basic medium. The compound,3-chloroacetophenone undergoes a heck coupling reaction with but-1-ene to give the desired product.

Formation of the desired product

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Most popular questions from this chapter

Which reactions will produce the desired product in good yield? You may assume that aluminum chloride is added as a catalyst in each case. For the reactions that will not give a good yield of the desired product, predict the major products.

Reagents Desired Product

(a) benzene + n-butyl bromide n-butylbenzene

(b) ethylbenzene + tert-butyl chloride p-ethyl-tert-butylbenzene

(c) bromobenzene + ethyl chloride p-bromoethylbenzene

(d) benzamide (PhCONH3) + CH3 CH2 CI p-ethylbenzamide

(e) toluene + HNO3, H2SO4 , heat 2,4,6-trinitrotoluene (TNT)

A graduate student tried to make o-fluorophenylmagnesium bromide by adding magnesium to an ether solution of o-fluorobromobenzene. After obtaining puzzling results with this reaction, she repeated the reaction by using as solvent some tetrahydrofuran that contained a small amount of furan. From this reaction, she isolated a fair yield of the compound that follows. Propose a mechanism for its formation

What products would you expect from the following reactions?

Step 2 of the iodination of benzene shows water acting as a base and removing a proton from the sigma complex. We did not consider the possibility of water acting as a nucleophile and attacking the carbocation, as in an electrophilic addition to an alkene. Draw the reaction that would occur if water reacted as a nucleophile and added to the carbocation. Explain why this type of addition is rarely observed.

Phenol reacts with three equivalents of bromine in CCl4(in the dark) to give a product of formula C6H3OBr3. When this product is added to bromine water, a yellow solid of molecular formula C6H2OBr4 precipitates out of the solution. The IR spectrum of the yellow precipitate shows a strong absorption (much like that of a quinone) around 1680cm-1 . Propose structures for the two products.

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