Nitro Compounds and Their Derivatives in Organic Synthesis
Nitro chemistry plays an important role in organic synthesis to construct new frameworks. This is due to the diverse properties of the nitro group. The strong electron-withdrawing ability of the nitro group reduces the electron density of the scaffold, facilitating reactions with nucleophiles or ele...
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Format | eBook |
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Language | English |
Published |
Basel, Switzerland
MDPI - Multidisciplinary Digital Publishing Institute
2020
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Abstract | Nitro chemistry plays an important role in organic synthesis to construct new frameworks. This is due to the diverse properties of the nitro group. The strong electron-withdrawing ability of the nitro group reduces the electron density of the scaffold, facilitating reactions with nucleophiles or electron transfer. In addition, the -hydrogen of the nitro group is highly acidic, giving a stable anion, which facilitates reactions with both electrophilic and nucleophilic reagents. In addition, the nitro group also serves as a good leaving group, which facilitates transformation to a wide variety of functional groups. Despite the substantial contributions of many researchers, nitro chemistry is still an exciting and challenging research area. This book brings together recent original research and review articles contributed by an international team of leading experts and pioneers in organic synthesis using nitro groups. It is sure to provide useful information and promising insights for researchers. |
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AbstractList | Nitro chemistry plays an important role in organic synthesis to construct new frameworks. This is due to the diverse properties of the nitro group. The strong electron-withdrawing ability of the nitro group reduces the electron density of the scaffold, facilitating reactions with nucleophiles or electron transfer. In addition, the -hydrogen of the nitro group is highly acidic, giving a stable anion, which facilitates reactions with both electrophilic and nucleophilic reagents. In addition, the nitro group also serves as a good leaving group, which facilitates transformation to a wide variety of functional groups. Despite the substantial contributions of many researchers, nitro chemistry is still an exciting and challenging research area. This book brings together recent original research and review articles contributed by an international team of leading experts and pioneers in organic synthesis using nitro groups. It is sure to provide useful information and promising insights for researchers. |
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Snippet | Nitro chemistry plays an important role in organic synthesis to construct new frameworks. This is due to the diverse properties of the nitro group. The strong... |
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SubjectTerms | 1-methyl-2-quinolone 3-b]pyridines 3-dicarbonyl compound 3-Dipole 4-dihydropyridines 8-nitro-5-RO-indolizines anchimeric assistance aromaticity conjugate addition cycloaddition C–H functionalization dearomatization Diels-Alder reaction dihydrofuran direct functionalization electron-withdrawing ability electrophilicity enolate epimerization hexapyrrolohexaazacoronene ICT character isoxazoline N-oxide isoxazolo nitration nitro nitro group nitroketone nitronate nitropyridines nucleophilic addition nucleophilic substitution nucleophilicity organic materials oxazole-pyrrole ring transformation PDE4 inhibitors perylenediimide Phenacylation of beta-nitropyridin-2-ones pyridone pyrrolidines Reference, Information and Interdisciplinary subjects Research and information: general SNAr substitution total synthesis |
Title | Nitro Compounds and Their Derivatives in Organic Synthesis |
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