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Organic reaction mechanisms 2020 = an annual survey covering the literature dated January to December 2020 /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Organic reaction mechanisms 2020/ edited by M.G. Moloney.
Reminder of title:
an annual survey covering the literature dated January to December 2020 /
other author:
Moloney, Mark G.
Published:
Hoboken, NJ :John Wiley & Sons, : 2024.,
Description:
1 online resource (623 p.)
Notes:
Includes index.
Subject:
Organic reaction mechanisms. -
Online resource:
https://onlinelibrary.wiley.com/doi/book/10.1002/9781119716846
ISBN:
9781119716846
Organic reaction mechanisms 2020 = an annual survey covering the literature dated January to December 2020 /
Organic reaction mechanisms 2020
an annual survey covering the literature dated January to December 2020 /[electronic resource] :edited by M.G. Moloney. - 1st ed. - Hoboken, NJ :John Wiley & Sons,2024. - 1 online resource (623 p.)
Includes index.
Cover -- Title Page -- Copyright -- List of Contributors -- Preface -- Contents -- Chapter 1 Reactions of Aldehydes and Ketones and Their Derivatives -- Formation and Reactions of Acetals and Related Species -- Reactions of Glucosides -- Reactions of Ketenes and Related Cumulenes -- Formation and Reactions of Nitrogen Derivatives -- Imines: Synthesis and General and Iminium Chemistry -- Mannich and Mannich-Type Reactions -- Stereoselective Hydrogenation of Imines, and Other Redox Processes -- Cyclizations of Imines -- Other Reactions of Imines -- Oximes, Oxime Ethers, and Oxime Esters.
Organic Reaction Mechanisms 2020, the 56th annual volume in this series, surveys research on organic reaction mechanisms described in the available literature dated 2020. The following classes of organic reaction mechanisms are comprehensively reviewed: Reaction of Aldehydes and Ketones and their Derivatives; Reactions of Carboxylic, Phosphoric, and Sulfonic Acids and their Derivatives; Oxidation and Reduction; Nucleophilic Aromatic Substitution; Electrophilic Aromatic Substitution; Carbocations; Nucleophilic Aliphatic Substitution; Carbanions and Electrophilic Aliphatic Substitution; Elimination Reactions; Polar Addition Reactions; Cycloaddition Reactions; Molecular Rearrangements; Transition Metal Coupling; Radicals.
Mode of access: World Wide Web.
ISBN: 9781119716846Subjects--Topical Terms:
810813
Organic reaction mechanisms.
LC Class. No.: QD502.5 / .M65 2024
Dewey Class. No.: 547/.2
Organic reaction mechanisms 2020 = an annual survey covering the literature dated January to December 2020 /
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Cover -- Title Page -- Copyright -- List of Contributors -- Preface -- Contents -- Chapter 1 Reactions of Aldehydes and Ketones and Their Derivatives -- Formation and Reactions of Acetals and Related Species -- Reactions of Glucosides -- Reactions of Ketenes and Related Cumulenes -- Formation and Reactions of Nitrogen Derivatives -- Imines: Synthesis and General and Iminium Chemistry -- Mannich and Mannich-Type Reactions -- Stereoselective Hydrogenation of Imines, and Other Redox Processes -- Cyclizations of Imines -- Other Reactions of Imines -- Oximes, Oxime Ethers, and Oxime Esters.
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Hydrazones and Related Species -- Iminium Ion Chemistry -- C C Bond Formation and Fission: Aldol and Related Reactions -- The Asymmetric Aldol -- The Morita-Baylis-Hilman Reaction and Its Aza-Variants -- Other Aldol and Aldol-Type Reactions -- The Michael Addition -- The Wittig and Other Olefinations -- Miscellaneous Additions -- Reactions of Enolates and Related Reactions -- Oxidation of Carbonyl Compounds -- Reduction of Carbonyl Compounds -- Miscellaneous Reactions -- References -- Chapter 2 Reactions of Carboxylic, Phosphoric, and Sulfonic Acids and Their Derivatives.
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Intermolecular Catalysis and Reactions -- Carboxylic Acids and their Derivatives -- Phosphoric Acids and their Derivatives -- Sulfonic Acids and their Derivatives -- Intramolecular Catalysis and Neighboring Group Participation -- Biologically Significant Reactions -- Carboxylic Acids and their Derivatives -- References -- Chapter 3 Oxidation and Reduction -- Oxidation by Metal Ions and Related Species -- Chromium, Manganese, Nickel, and Cobalt -- Copper, Silver, and Gold -- Rhenium, Bismuth, and Tungsten -- Palladium, Iridium, Rhodium, and Platinum -- Group VIII Metals -- Cerium.
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Oxidation by Compounds of Nonmetallic Elements -- Nitrogen, Sulfur, and Selenium -- Halogens -- Ozonolysis and Ozonation -- Peracids and Peroxides -- Photochemical Oxidation and Singlet Oxygen -- Triplet Oxygen and Autoxidation -- Electrochemical Oxidations -- Other Oxidations -- Reduction by Metal Hydrides -- Hydrogenation -- Transfer Hydrogenation -- Other Reductions -- References -- Chapter 4a Nucleophilic Aromatic Substitution -- General -- Reactions of Arenediazonium Salts -- The SNAr Mechanism -- Meisenheimer and Related Complexes -- Benzyne and Related Intermediates.
505
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Transition Metal-Catalyzed Carbon-Carbon Bond Formation -- References -- Chapter 4b Electrophilic Aromatic Substitution -- General Introduction -- Computational Studies -- Protonation and Deuteration -- Halogenation -- Chlorination -- Bromination -- Nitration -- Amidation, Amination, and Azidation -- Oxylation -- Sulfanylation and Sulfonation -- Metallation -- C C Bond-Forming Reactions -- Friedel-Crafts Alkylation -- Friedel-Crafts Acylation -- Arylation -- Miscellaneous FGIs -- References -- Chapter 5 Carbocations -- General -- Vinyl, Allyl, and Propargyl Cations.
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Organic Reaction Mechanisms 2020, the 56th annual volume in this series, surveys research on organic reaction mechanisms described in the available literature dated 2020. The following classes of organic reaction mechanisms are comprehensively reviewed: Reaction of Aldehydes and Ketones and their Derivatives; Reactions of Carboxylic, Phosphoric, and Sulfonic Acids and their Derivatives; Oxidation and Reduction; Nucleophilic Aromatic Substitution; Electrophilic Aromatic Substitution; Carbocations; Nucleophilic Aliphatic Substitution; Carbanions and Electrophilic Aliphatic Substitution; Elimination Reactions; Polar Addition Reactions; Cycloaddition Reactions; Molecular Rearrangements; Transition Metal Coupling; Radicals.
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Mode of access: World Wide Web.
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Description based on print version record.
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https://onlinelibrary.wiley.com/doi/book/10.1002/9781119716846
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