首页> 外文期刊>Beilstein journal of organic chemistry. >Direct and indirect single electron transfer (SET)-photochemical approaches for the preparation of novel phthalimide and naphthalimide-based lariat-type crown ethers
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Direct and indirect single electron transfer (SET)-photochemical approaches for the preparation of novel phthalimide and naphthalimide-based lariat-type crown ethers

机译:直接和间接单电子转移(SET)-光化学方法制备新型邻苯二甲酰亚胺和萘二甲酰亚胺基套索型冠醚

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摘要

In this review, we describe direct and indirect photochemical approaches that have been developed for the preparation of phthalimide- and naphthalimide-based, lariat-type crown ethers. The direct route utilizes a strategy in which nitrogen-linked side chains containing polyethoxy-tethered phthalimides and naphthalimides, possessing terminal α-trialkylsilyl groups, are synthesized utilizing concise routes and UV-irradiation to form macrocyclic ring systems. In contrast, the indirect route developed for the synthesis of lariat-type crown ethers employs sequences in which SET-promoted macrocyclization reactions of α-trialkylsilyl-terminated, polyethoxy-tethered phthalimides and naphthalimides are followed by a side chain introduction through substitution reactions at the amidol centers in the macrocyclic ethers. The combined observations made in these investigations demonstrate the unique features of SET-promoted photocyclization reactions that make them well-suited for the use in the synthesis of functionalized crown ethers. In addition, while some limitations exist for the general use of SET-photochemical reactions in large-scale organic synthesis, important characteristics of the photoinduced macrocyclization reactions make them applicable to unique situations in which high temporal and spatial control is required.
机译:在这篇综述中,我们描述了为制备邻苯二甲酰亚胺和萘二甲酰亚胺基的套索型冠醚而开发的直接和间接光化学方法。直接途径利用了一种策略,其中利用简洁的途径和紫外线辐射来合成含有具有末端α-三烷基甲硅烷基的聚乙氧基连接的邻苯二甲酰亚胺和萘二甲酰亚胺的氮连接侧链。相反,为合成套索型冠状醚而开发的间接途径采用的顺序是:SET促进α-三烷基甲硅烷基封端的聚乙氧基系苯二甲酰亚胺和萘二甲酰亚胺的SET促进的大环化反应,然后通过取代反应引入侧链。酰胺基位于大环醚中。这些研究中的综合观察表明,SET促进的光环化反应具有独特的功能,使其非常适合用于功能化冠醚的合成。另外,尽管SET-光化学反应在大规模有机合成中的普遍使用存在一些限制,但是光诱导的大环化反应的重要特征使其可适用于需要高度时间和空间控制的独特情况。

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