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首页> 外文期刊>Chemistry - A European Journal >The Remarkable Chemistry of Trannulenes: Green Fluorinated Fullerenes with Unconventional Aromaticity
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The Remarkable Chemistry of Trannulenes: Green Fluorinated Fullerenes with Unconventional Aromaticity

机译:气阀的卓越化学:具有非常规芳香性的绿色氟化富勒烯

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摘要

We report the first reaction of trannulenes involving their thermal isomerization to a new class of compounds termed “triumphenes”. The thermodynamically controlled conversion of trannulenes into triumphenes is accompanied by an unprecedented migration of three organic addends from one hemisphere of the fullerene cage to another. The reaction products, bearing aliphatic substituents, might find applications in materials science as strong electron acceptors due to the presence of fifteen electron-withdrawing fluorine atoms in their molecular framework. It was revealed that the isomerization of trannulenes can be affected by the presence of unsaturated compounds in the reaction mixture. Heating of trannulenes C60F15R3 with C60, C70, anthracene, or pentacene at reflux in 1,2-dichlorobenzene yields fluorinated derivatives C60F14R2A, which possess a fused cyclic addend A. The products of this reaction have “triumphene-type” addition patterns and seem to be formed through an unprecedented sequence of elimination, addition, and isomerization steps. The molecular structure of a representative triumphene was proven unambiguously by X-ray single-crystal diffraction analysis and by NMR spectroscopy. The reactions revealed here open up numerous opportunities for chemical derivatization of fluorinated fullerenes. This method promises to provide a new path towards valuable photoactive materials and a new generation of fullerene-based compounds that are suitable for biomedical applications.
机译:我们报告了涉及它们的热异构化的对戊二烯的第一反应为一类新的化合物,称为“双酚”。将热变性控制的戊二烯转化为双酚,伴随着三种有机加成物从富勒烯笼的一个半球到另一个半球的空前迁移。带有脂肪族取代基的反应产物由于在分子结构中存在15个吸电子原子,因此可以作为强电子受体在材料科学中得到应用。揭示了在反应混合物中不饱和化合物的存在会影响对戊二烯的异构化。用C 60 ,C 70 加热对戊二烯C 60 F 15 R 3 ,蒽或并五苯在1,2-二氯苯中回流得到氟化衍生物C 60 F 14 R 2 A,其具有稠环加成物A.此反应的产物具有“双烯型”加成模式,似乎是通过空前的消除,加成和异构化步骤序列形成的。通过X射线单晶衍射分析和NMR光谱法清楚地证明了具有代表性的三叉戟的分子结构。此处揭示的反应为氟化富勒烯的化学衍生开辟了许多机会。这种方法有望提供一条通往有价值的光敏材料的新途径,并为适合生物医学应用的新一代基于富勒烯的化合物提供途径。

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