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Five-membered heterocycles electrophilic substitution

Ferrocenes, heterocyclic, 13, 1 Five-membered rings, electrophilic substitutions... [Pg.332]

Five-Membered Unsaturated Heterocycles 1151 Structures of Pyrrole, Furan, and Thiophene 1152 Electrophilic Substitution Reactions of Pyrrole, Furan, and Thiophene 1153 Pyridine, a Six-Membered Heterocycle Electrophilic Substitution of Pyridine Nucleophilic Substitution of Pyridine Fused-Ring Heterocycles 1158 Nucleic Acids and Nucleotides 1160 Structure of Nucleic Acids 1163 Base Pairing in DNA The Watson-Crick Model Nucleic Acids and Heredity 1166 Replication of DNA 1167... [Pg.17]

Ferrocenes, heterocyclic, 13, 1 Five-membered rings, electrophilic substitutions of, 13, 235 Furan chemistry, development of the chemistry of (1952-1963) 7, 377... [Pg.437]

In the reactions of electrophilic substitution, isoxazole is far less active than the five-membered heterocycles with one hetero atom and pyrazole. It is closer to pyridine, but more reactive. [Pg.389]

Another variant of the Heck reaction which is important in heterocyclic chemistry utilizes five membered heterocycles as olefin equivalent (2.2.)7 It is not clear whether the process, coined as heteroaryl Heck reaction follows the Heck mechanism (i. e. carbopalladation of the aromatic ring followed by //-elimination) or goes via a different route (e.g. electrophilic substitution by the palladium complex or oxidative addition into the C-H bond). Irrespective of these mechanistic uncertainties the reaction is of great synthetic value and is frequently used in the preparation of complex policyclic structures. [Pg.22]


See other pages where Five-membered heterocycles electrophilic substitution is mentioned: [Pg.307]    [Pg.41]    [Pg.12]    [Pg.781]    [Pg.526]    [Pg.106]   
See also in sourсe #XX -- [ Pg.13 , Pg.235 ]




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