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首页> 外文期刊>Synthesis: International Journal of Methods in Synthetic Organic Chemistry >Recent advances in the synthesis and application of benzocyclobutenones and related compounds
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Recent advances in the synthesis and application of benzocyclobutenones and related compounds

机译:苯并环丁烯酮及相关化合物的合成和应用的最新进展

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Benzocyclobutenones are an intriguing class of four-membered-ring ketones that have been used extensively as powerful synthetic intermediates in organic synthesis. Their high reactivity is primarily attributed to the unique high electrophilicity of the carbonyl unit and the ability to generate o-quinone dimethides, allowing a myriad of different transformations. However, the synthesis of benzocyclobutenones still represents a great challenge. This review provides an overview of the preparation, use and impact of benzocyclobutenones in organic synthesis. Selected applications in the synthesis of natural products are also described, in order to illustrate the utility of these compounds. 1 Introduction 2 Synthetic Methods for Preparing Benzocyclobutenones 2.1 [2+2]-Type Cycloadditions 2.2 Metal-Mediated Intramolecular Cyclizations 2.3 Metal-Catalyzed Cross-Coupling Reactions 2.3.1 Carbon-Hydrogen Bond-Functionalization Events 2.3.2 Stille Cross-Coupling Reactions 2.4 Other Synthetic Methods for Preparing Benzocyclobutenones 3 Synthetic Application of Benzocyclobutenones and Related Compounds 3.1 Synthesis of Polycyclic Compounds via o-Quinone Dimethides 3.1.1 Synthesis of ??-Tetralones 3.1.2 Synthesis of Benzo[n]annulenes 3.1.3 Synthesis of Naphthalene Derivatives 3.1.4 Synthesis of Anthraquinones 3.1.5 Synthesis of Benzodiazepines 3.1.6 Synthesis of Tetrahydronaphthalenes 3.1.7 Synthesis of Isochromanones 3.2 Synthesis of Fused Rings via Non-Electrocyclization Techniques 3.2.1 Ring Expansions from Four- to Five-Membered Rings 3.2.2 Ring Expansions from Four- to Six-Membered Rings 3.3 Other Synthetic Applications 3.3.1 Tricarbonylchromium Complexes 3.3.2 Base-Induced Carbon-Carbon Bond Cleavage 3.4 Benzocyclobutenones and Their Derivatives in Natural Product Synthesis 4 Conclusions. ? Georg Thieme Verlag Stuttgart New York.
机译:苯环丁烯酮是一类引人入胜的四元环酮,已广泛用作有机合成中的强力合成中间体。它们的高反应性主要归因于羰基单元独特的高亲电性和产生邻醌二甲基化物的能力,从而可以进行无数种不同的转化。然而,苯并环丁烯酮的合成仍然是巨大的挑战。这篇综述概述了苯并环丁烯酮在有机合成中的制备,使用和影响。为了说明这些化合物的用途,还描述了在天然产物的合成中的选定应用。 1简介2制备苯并环丁烯酮的合成方法2.1 [2 + 2]型环加成物2.2金属介导的分子内环化2.3金属催化的交叉偶联反应2.3.1碳氢键-官能化事件2.3.2斯蒂勒交叉偶联反应2.4制备苯并环丁烯酮的其他合成方法3苯并环丁烯酮及相关化合物的合成应用3.1通过邻醌二甲酮合成多环化合物3.1.1ε-四酮类化合物的合成3.1.2苯并[n]环戊烯的合成3.1.3萘衍生物的合成3.1.4蒽醌的合成3.1.5苯二氮杂卓的合成3.1.6四氢萘的合成3.1.7异色酮的合成3.2通过非电环化技术合成稠环3.2.1从四元至五元环的扩环3.2.2从四到六元环的环扩展3.3其他合成应用3.3.1三羰基铬配合物3.3.2碱诱导的C碳-碳键断裂3.4天然产物合成中的苯并环丁烯酮及其衍生物4结论。 ? Georg Thieme Verlag斯图加特纽约。

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