14. Based on the structural intermediates below, classify the role of the nitro group in the nucleophilic aromatic substitution reaction of p-nitrochlorobenzene with KOH. OH :ÖH 3²8- TÖ www +N C1 C1 OH 70 7Ö TC1: a) electron withdrawing group, activating towards nucleophilic aromatic substitution b) electron withdrawing group, deactivating towards nucleophilic aromatic substitution c) electron donating group, activating towards nucleophilic aromatic substitution d) electron donating group, deactivating towards nucleophilic aromatic substitution

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14. Based on the structural intermediates below, classify the role of the nitro group in the
nucleophilic aromatic substitution reaction of p-nitrochlorobenzene with KOH.
+N
TÖ
C1
:ÖH
C1 OH
<
N
TÖ +
³0:
F
HE
OH
HO
N
70+
a) electron withdrawing group, activating towards nucleophilic aromatic substitution
b) electron withdrawing group, deactivating towards nucleophilic aromatic substitution
c) electron donating group, activating towards nucleophilic aromatic substitution
d) electron donating group, deactivating towards nucleophilic aromatic substitution
TCI:
Transcribed Image Text:14. Based on the structural intermediates below, classify the role of the nitro group in the nucleophilic aromatic substitution reaction of p-nitrochlorobenzene with KOH. +N TÖ C1 :ÖH C1 OH < N TÖ + ³0: F HE OH HO N 70+ a) electron withdrawing group, activating towards nucleophilic aromatic substitution b) electron withdrawing group, deactivating towards nucleophilic aromatic substitution c) electron donating group, activating towards nucleophilic aromatic substitution d) electron donating group, deactivating towards nucleophilic aromatic substitution TCI:
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