Chapter 16: Electrophilic Attack on Derivatives of Benzene (Substituents Control Regioselectivity) Flashcards

1
Q

Activators

A

electron donors

direct ortho/para

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2
Q

Deactivators

A

electron acceptors
direct meta
cause further electrophilic aromatic substitution and incorporation of donors (Friedel-Crafts alkylation) causes substitution to accelerate

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3
Q

Induction

A

occurs in σ bonds
tapers off rapidly with distance
governed by relative electronegativity of atoms and polarization of bonds

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4
Q

Resonance

A

takes place in π bonds

has a longer range and is strong in charged systems

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5
Q

-CH3

A

inductive donors
activator
ortho/para

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6
Q

Alkyl Groups

A

inductive donors
activator
ortho/para

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7
Q

-CF3

A

electron withdrawing due to electronegative F
deactivator
meta

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8
Q

Heteroatoms (N, O, Halogens)

A

inductive withdrawing due to electronegativity and + charged atoms (carbonyl, cyano, nitro, and sulfonyl)
deactivators
meta

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9
Q

Inductive Donors

A

activating
ortho/para
intermediate carbocation is next to an electron donating group, stabilizes it
ortho/para products are formed in different amounts due to steric effects

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10
Q

Inductive Acceptors

A

deactivating
meta
inductive e-withdrawing substituents destabilize carbocation at all positions, ortho/para put + charge next to e- accepting group, less favored than meta

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11
Q

Resonance Donors

A

activating

ortho/para

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12
Q

Resonance Acceptors

A

deactivating at all positions, lesser extent at meta
meta
avoids + charge next to e-withdrawing groups

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13
Q

Halogens

A

deactivating
ortho/para
withdraw inductively, donate by resonance

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14
Q

Disubstituted Benzene Substitution Rules

A
  1. most powerful activator controls position of attack
  2. power of substitutes is ranked into three groups
    I. NR2, OR > II. X, R > III. meta directors
  3. discount ortho attack to bulky groups or between two substituents
  4. rules 1-3 are applicable to more highly substituted benzenes
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