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Algar-Flynn-Oyamada氧化反应在碱和双氧水存在下,2’-羟基查尔酮(2’-hydroxychalcones)氧化环化转化为 2-芳基-3-羟基-4H-1苯并吡喃-4-酮(黄酮醇,flavonols)的反应。Algar, J.;Algar and Flynn were Irish chemists.Oyamada, T. J. Chem.Limberakis, C. Algar-Flynn-Oyamada Reaction.编译自:Name Reactions (A Collection of Detailed...
有机化学100个必备反应机理74-Peptide (Amide) Coupling.Fig. 74.1: The peptide (amide) coupling (DCC) mechanism.Fig. 74.2: The peptide (amide) coupling (DCC + HOBt) mechanism.Fig. 74.3: The peptide (amide) coupling (HBTU) mechanism.Fig. 74.4: The main peptide (amide) coupling reagents and catalysts.Fig. 74.5: The discove...
有机化学100个必备反应机理85-Sonogashira Cross-Coupling.
有机化学100个必备反应机理90-Swern Oxidation.Fig. 90.1: The Swern oxidation mechanism.Fig. 90.2: The Swern oxidation variation mechanism (DCC + DMSO)Fig. 90.3: The discovery of the Swern oxidation.
每天一个人名反应--Schlittler-Muller修正。Pomeranz-Fritsch反应中两个底物的氨基和醛基简单地予以交换的反应。反应实例。Schlittler, E.;and Synthetic Applications--Fifth Edition,有机人名反应——机理及应用 第四版。
有机化学100个必备反应机理59-Michael AdditionFig. 59.1: The Michael addition mechanismFig. 59.2: Reactions related to the Michael additionFig. 59.3: The discovery of the Michael additionFig. 59.4: The Stetter reaction mechanism (aromatic aldehyde)Fig. 59.5: The Stetter reaction mechanism (aliphatic aldehyde)
有机化学100个必备反应机理51-Jones OxidationFig. 51.1: The Jones oxidation mechanismFig. 51.2: Various oxidizing reagents formed from chromium oxideFig. 51.3: The discovery of the Jones oxidation.
有机化学100个必备反应机理46-Heck Cross-CouplingFig. 46.1: The Heck cross-coupling mechanismFig. 46.2: General illustration of the oxidative addition stepFig. 46.3: The discovery of the Heck cross-coupling.
有机化学100个必备反应机理40-Gabriel SynthesisFig. 40.1: The Gabriel synthesis mechanismFig. 40.2: The Delépine reaction mechanismFig. 40.3: The discovery of the Gabriel synthesis.
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