Mullins 1st Edition
Ch. 23 - Benzene 1: Aromatic Stability and Substitution ReactionsProblema 2
Draw resonance structures to identify which of the following is the more stable carbocation.
Problema 5a
Suggest an arrow-pushing mechanism that accounts for the formation of the following Lewis acid–Lewis base complexes. Label the Lewis acid and Lewis base in each.
(a)
Problema 5b
Suggest an arrow-pushing mechanism that accounts for the formation of the following Lewis acid–Lewis base complexes. Label the Lewis acid and Lewis base in each.
(b)
Problema 7
The average C―C single bond length is 1.53 Å, and the average C=C double bond length is 1.31 Å. All of the C―C bonds in benzene are the same length (1.42 Å). Explain.
Problema 8
If Kekulé's original hypothesis had been correct and benzene was really an equilibrium between two structures, how many distinct isomers would exist for 1,2-dichlorobenzene?
Problema 9
Imidazole is a heteroaromatic base. Which nitrogen, a or b, is most basic?
Problema 10
Between pyrrole and pyrrolidine, which nitrogen would be most nucleophilic? Why?
Problema 12
Which of the following concerted reactions would have a more stable transition state? Why?
Problema 13
Cyclopentane has pKₐ = 50, whereas cyclopentadiene has pKₐ = 16. Explain this difference.
Problema 14
Which resonance structure, A or B, is most contributing?
Problema 16b
(i) Classify the following molecules as aromatic, nonaromatic, or antiaromatic.
(ii) For the aromatic and antiaromatic molecules, solve for n in Hückel’s/Breslow’s rule. For the other molecules, explain which of the rules of aromaticity is being broken.
(b)
Problema 16d
(i) Classify the following molecules as aromatic, nonaromatic, or antiaromatic.
(ii) For the aromatic and antiaromatic molecules, solve for n in Hückel’s/Breslow’s rule. For the other molecules, explain which of the rules of aromaticity is being broken.
(d)
Problema 21
Draw a Frost circle for the cyclopropenyl anion and compare it to the Frost circle for the cyclopropenyl cation. What has changed?
Problema 22a
Draw a Frost circle for the cyclopentadienyl cation and compare it to the Frost circle for the cyclopentadienyl anion. What has changed?
Problema 23
An incomplete Frost diagram for a seven-membered ring is shown. Include the necessary electrons to make it represent an aromatic molecule. Then the draw the structure to which it would correspond.
Problema 25c
Name the following benzene derivatives according to IUPAC rules.
(c)
Problema 26a
Name the following benzene derivatives using ortho, meta, and para to identify the relative position of substituents.
(a)
Problema 27b
Convert the given name into the corresponding IUPAC name.
(b)
Problema 29
The zwitterionic form of carbonyls is often used to explain their electrophilicity. Draw the zwitterionic structure of NO+2. Why is this such a great electrophile at the central nitrogen?
Problema 29f
Classify the following conjugated systems as having 4n or 4n + 2 π electrons.
(f)
Problema 32d
Predict the product of the following Friedel–Crafts alkylation reactions. Assume only one alkyl group adds in each case.
(d)
Problema 33b
Predict the product of the following Friedel–Crafts acylation reactions.
(b)
Problema 37
In Section 23.7.4, we learned that Friedel–Crafts alkylation suffers from overalkylation.
(a) Draw the product of a Friedel–Crafts reaction that resulted in three methyl groups adding to the ring.
(b) Why is hard to stop at the addition of one alkyl group?
Problema 39
With a small electron-donating group on the ring, it is possible to get as much as a 2:1 ratio of ortho to para. Why might this be?
Problema 40b
Predict the major product of the following electrophilic aromatic substitution reactions.
(b)
Problema 43b
Predict the products of the following electrophilic aromatic substitution reactions.
(b)
Problema 45c
Predict the major product of the following electrophilic aromatic substitution reactions.
(c)
Problema 46d
Beginning with benzene, synthesize the following substituted benzenes. The ideal number of steps is indicated.
(d)
Problema 53c
Predict the products of the following nucleophilic aromatic substitution reactions.
(c)
Problema 55
Assume that Ha is the proton removed in the first step of the benzyne mechanism with p-chlorotoluene. Draw the benzyne intermediate and identify the two products that will result.