(a)
Interpretation:
In the given reaction, the
Concept introduction:
A Friedel-Craft’s alkylation reaction does not occur readily unless the halogen atom of the

Answer to Problem 22.26P
The product of the given Friedel-Craft’s alkylation reaction is as shown:
Explanation of Solution
The given reaction is Friedal Craft’s alkylation reaction. In the first step,
With the help of mechanism of electrophilic aromatic substitution reaction, the product of the given Friedel-Craft’s alkylation reaction was determined.
(b)
Interpretation:
In the given reaction, the aromatic ring has just one chemically distinct, aromatic H, so a single electrophilic aromatic substitution will lead to just a single product. The product of the given reaction is to be determined.
Concept introduction:
Electrophiles in electrophilic aromatic substation reactions typically must be generated in situ from more stable precursors that can be added as starting materials. Aluminum chloride acts as a Lewis acid and forms a complex with chlorine. After heterolysis, electrophilic aromatic substitution reaction takes place. The arenium ion intermediate is a carbocation intermediate consisting of five

Answer to Problem 22.26P
The product of the given halogenation reaction is as shown:
Explanation of Solution
The given reaction is Friedal Craft’s alkylation reaction. In the first step
With the help of mechanism of electrophilic aromatic substitution reaction, the product of the given reaction was determined.
(c)
Interpretation:
In the given reaction, the aromatic ring has just one chemically distinct, aromatic H, so a single electrophilic aromatic substitution will lead to a just a single product. The product of the given reaction is to be determined.
Concept introduction:
In Friedel Craft’s acylation reaction, the aromatic species is treated with acyl chloride. The product of Friedel Craft’s acylation reaction is

Answer to Problem 22.26P
The product of the given Friedel-Craft’s acylation reaction is as shown.
Explanation of Solution
The given reaction is Friedal Craft’s acylation reaction. In the first step,
With the help of the mechanism of electrophilic aromatic substitution reaction, the product of the given Friedel-Craft’s acylation reaction was determined.
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Chapter 22 Solutions
Organic Chemistry: Principles And Mechanisms
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- Draw the stepwise mechanism for the reactionsarrow_forwardPart I. a) Draw reaction mechanism for the transformations of benzophenone to benzopinacol to benzopinaco lone b) Pinacol (2,3-dimethyl, 1-3-butanediol) on treatment w/ acid gives a mixture of pina colone (3,3-dimethyl-2-butanone) and 2, 3-dimethyl - 1,3-butadiene. Give reasonable mechanism the formation of the products Forarrow_forward3. The explosive decomposition of 2 mole of TNT (2,4,6-trinitrotoluene) is shown below: Assume the C(s) is soot-basically atomic carbon (although it isn't actually atomic carbon in real life). 2 CH3 H NO2 NO2 3N2 (g)+7CO (g) + 5H₂O (g) + 7C (s) H a. Use bond dissociation energies to calculate how much AU is for this reaction in kJ/mol.arrow_forward
- Part I. Draw reaction mechanism for the transformations of benzophenone to benzopinacol to benzopinaco lone and answer the ff: Pinacol (2,3-dimethyl, 1-3-butanediol) on treatment w/ acid gives a mixture of pina colone and (3,3-dimethyl-2-butanone) 2,3-dimethyl-1,3-butadiene. Give reasonable mechanism the formation of the products Forarrow_forwardShow the mechanism for these reactionsarrow_forwardDraw the stepwise mechanismarrow_forward
- Draw a structural formula of the principal product formed when benzonitrile is treated with each reagent. (a) H₂O (one equivalent), H₂SO₄, heat (b) H₂O (excess), H₂SO₄, heat (c) NaOH, H₂O, heat (d) LiAlH4, then H₂Oarrow_forwardDraw the stepwise mechanism for the reactionsarrow_forwardDraw stepwise mechanismarrow_forward
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