Abbreviations
Page: iii-iv (2)
Author: Reza Ranjbar-Karimi and Alireza Poorfreidoni
DOI: 10.2174/9789811473791120010003
Properties of Perhalopyridines
Page: 1-7 (7)
Author: Reza Ranjbar-Karimi and Alireza Poorfreidoni
DOI: 10.2174/9789811473791120010004
PDF Price: $15
Abstract
The introduction of halogen atoms on the pyridine ring causes significant changes in its properties. Halogens reduced basicity of pyridine ring as well as dipole moment. The presence of dense halogen atoms renders a higher density of perhalopyridines than pyridine. Fluorine atoms cause a low-field shift of pyridine carbons than chlorine and bromine atoms. Perhalopyridines are mainly involved in nucleophilic substitution reactions due to the electron-withdrawing nature of halogens while perfluoropyridines are more active than others.
Perfluoropyridines
Page: 8-151 (144)
Author: Reza Ranjbar-Karimi and Alireza Poorfreidoni
DOI: 10.2174/9789811473791120010005
PDF Price: $15
Abstract
Fluorine atom has unique properties and has a great interest in organic chemistry and pharmaceuticals. Insertion of fluorine atoms on pyridines induces significant properties to the pyridine ring. The introduction of fluorine atoms on pyridine is carried out by the fluorination of pyridine or pentachloropyridine. The withdrawing nature of these atoms is mainly responsible for the high reactivity of perfluoropyridines toward nucleophilic attack. Therefore, perfluoropyridines are a significant starting material for the synthesis of other substituted pyridines, ring-fused systems as well as macrocyclic compounds via reaction with various monodentate and bidentate nucleophiles, whereas the nature of nucleophile, reaction condition, and solvent have a basic role in the regiochemistry of the reactions. Furthermore, these compounds could participate in organometallic reactions by the reaction of halogen atom with metals and organometallic reagents. Additionally, they underwent hydrodefluorination in photochemical reactions in the presence of catalysts.
Perchloropyridines
Page: 152-218 (67)
Author: Reza Ranjbar-Karimi and Alireza Poorfreidoni
DOI: 10.2174/9789811473791120010006
PDF Price: $15
Abstract
Preparation of pentachloropyridine is carried out by chlorination of pyridine ring or it is obtained from perchlorocyclopentene-3-one via several steps. Perchloropyridines are mainly involved in nucleophilic reactions and produce various substituted perchloropyridines, whereas the nature of solvent and nucleophile hindrance affect the regiochemistry of the reactions. Furthermore, these compounds participated in cross-coupling reactions and produced arylated and alkenylpyridines pyridines. Additionally, they are involved in photochemical reactions and produce ring-fused systems. Oxidation of pentachloropyridine gave pentachloropyridine-Noxide, which is active toward nucleophiles at ortho positions. The reaction of perchloropyridines with methyl fluorosulphonate produced corresponding Nmethylated compounds, which are active toward nucleophilic attack. Organometallic compounds obtained from pentachloropyridined in reaction with various electrophiles produced corresponding substituted products.
Perbromopyridines
Page: 219-235 (17)
Author: Reza Ranjbar-Karimi and Alireza Poorfreidoni
DOI: 10.2174/9789811473791120010007
PDF Price: $15
Abstract
Pentabromopyridine is prepared from 4-hydroxypyridine via two pathways. Pentabromopyridine is less active than pentachloro- and pentafluoropyridine toward nucleophilic attack. Its nucleophilic reaction is affected by the hindrance of the bromine atom. Oxidation and methylation of pentabromopyridine give pentabromopyridine-N-oxide and N-methylbromopyridinium salt. Metal-halogen exchange between pentabromopyridine and n-butyl-lithium or magnesium give tetrabromo-4-pyridyl-lithium and tetrabromo-4-pyridylmagnesium bromide. 2,4,6- tribromo-3,5-difluoropyridine is obtained from the bromination of pentafluoropyridine in the reaction with nucleophiles at the C-F bond. Cross-coupling reactions of 2,4,6- tribromo-3,5-difluoropyridine and 3,5-dibromo-2,6-dichloropyridine produced arylated and alkenylpyridines pyridines.
Subject Index
Page: 236-244 (9)
Author: Reza Ranjbar-Karimi and Alireza Poorfreidoni
DOI: 10.2174/9789811473791120010008
Introduction
Halogenated pyridines can be used as interesting starting materials in a wide range of organic synthesis methods. Substituted pyridine compounds are used generally as starting materials in the nucleophilic substitution reactions and have unique scaffolds for the construction of other heterocyclic and macrocyclic compounds. They also have important medicinal properties. Due to synthetic difficulties in the synthesis of the highly substituted pyridine derivatives from pyridine itself, perhalopyridines have a special importance in this regard. This book covers the synthetic reactions and applications of perhalopyridines. An introductory chapter introduces the reader to the physical and chemical properties of halopyridines, followed by 3 chapters which focus on pentafluoropyridine, pentachloropyridine and pentabromopyridine, respectively. The focused chapters provide information about synthetic methods and relevant nucleophilic reactions for each of the listed perhalopyridines and their derivatives. The book is a quick reference on perhalopyridines for students of applied chemistry, organic chemistry and chemical engineering.