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首页> 外文期刊>Angewandte Chemie >Formation of Azulene-Embedded Nanographene: Naphthalene to Azulene Rearrangement During the Scholl Reaction
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Formation of Azulene-Embedded Nanographene: Naphthalene to Azulene Rearrangement During the Scholl Reaction

机译:氮素内纳米图谱的形成:在舒尔反应过程中萘对紫红素重排的萘

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摘要

Incorporation of a non-hexagonal ring into a nanographene framework can lead to new electronic properties. During the attempted synthesis of naphthalene-bridged double [6]helicene and heptagon-containing nanographene by the Scholl reaction, an unexpected azulene-embedded nanographene and its triflyloxylated product were obtained, as confirmed by X-ray crystallographic analysis and 2D NMR spectroscopy. A 5/7/7/5 ring-fused substructure containing two formal azulene units is formed, but only one of them shows an azulene-like electronic structure. The formation of this unique structure is explained by arenium ion mediated 1,2-phenyl migration and a naphthalene to azulene rearrangement reaction according to an in-silico study. This report represents the first experimental example of the thermodynamically unfavorable naphthalene to azulene rearrangement and may lead to new azulene-based molecular materials.
机译:将非六边形环掺入纳米表架可能导致新的电子性质。 在通过Scholl反应的尝试合成萘桥桥的双[6]甲酰烯烯烯烃期间,得到了意外的氮素嵌入的纳米图谱和其甲氧化物化产物,得到了X射线晶体分析和2D NMR光谱。 形成5/7/7/5型环熔含有含有两个正式丙烯单元的亚嗪单元,但其中一个仅显示出紫红素的电子结构。 根据三硅研究,通过亚烯离子介导的1,2-苯基迁移和萘对紫红素重排反应来解释的形成。 该报告代表了热力学不利的萘对紫苏重排的第一个实验例,并且可能导致新的氮烯类分子材料。

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