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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Construction of highly fluorescent N-O seven-membered heterocycles via thermo-oxidation of oxazolidines
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Construction of highly fluorescent N-O seven-membered heterocycles via thermo-oxidation of oxazolidines

机译:通过氧化氧基氨酸的热氧化施工高荧光N-O七元杂环

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Nitrogen heterocycles are significant structural components for organic compounds and pharmaceuticals. A new class of photooxidation products of oxazolidines with seven-membered heterocycles were reported in our previous work. These photosynthesized molecules have great potential for attractive fluorescent materials due to their unusual conjugated structure and rigidity. However, the violent UV irradiation during synthesis results in many undesirable side-products, making the purification and scale-up of desirable products difficult. Herein, the desired N-O seven-membered heterocycles were quantitatively synthesized via one-step thermo-oxidation using O-2/CH3I, I-2 or N-iodosuccinimide (NIS) as an oxidant. The structures of these compounds were confirmed by single-crystal X-ray diffraction. During the thermal-oxidation process, intramolecular ionization generated a flexible -CH2CH2O- group, which attacked the CC bond with the assistance of oxidants and subsequently led to the formation of the products. The formed seven-membered heterocycles exhibited remarkably enhanced fluorescence compared to the corresponding ring-open forms of oxazolidines, which possess more flexible conjugated substructures. In particular, the fluorescence quantum yields of some products reach 0.92 and 0.62 in the red emission region. Theoretical calculations suggest that the strong fluorescence originates from their unique structural rigidity and planarity and thus highly conjugated electron system. This work provides a new synthesis method for demanding medium-sized heterocycles with notably strong fluorescence. These new dyes have potential use as visible and fluorescent dual-mode colour inks, nucleophilic reagent response materials, and bio-label materials.
机译:氮杂环是有机化合物和药物的显着结构组分。在我们以前的工作中报道了一类新的氧化杂氧氧化胺的游泳氧化产品。由于其不寻常的共轭结构和刚性,这些光合作用的分子具有很大的荧光材料潜力。然而,在合成期间的剧烈紫外线照射导致许多不希望的副产品,使得纯化和扩大的理想产品困难。这里,使用O-2 / CH 3 I,I-2或N-碘琥珀酰亚胺(NIS)作为氧化剂,通过一步热氧化定量地合成所需的N-O七元杂环。通过单晶X射线衍射证实这些化合物的结构。在热氧化过程中,分子内电离产生了柔性-CH2CH2O-基团,其在氧化剂的辅助中攻击了CC键,随后导致了产品的形成。与相应的环唑烷的相应的环形开口形式相比,形成的七元杂环具有显着增强的荧光,其具有更柔性的共轭子结构。特别地,在红色发射区域中,一些产品的荧光量子产率达到0.92和0.62。理论计算表明,强荧光源自其独特的结构刚性和平面,因此高缀合电子系统。这项工作提供了一种新的合成方法,用于要求中等大小的荧光强烈的荧光。这些新染料具有可见和荧光双模彩色油墨,亲核试剂响应材料和生物标签材料的潜在用途。

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