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Chemistry of Fullerene Epoxides: Synthesis Structure and Nucleophilic Substitution-Addition Reactivity

机译:富勒烯环氧化合物的化学:合成结构和亲核取代-加成反应性。

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摘要

Fullerene epoxides, C60On, having epoxide groups directly attached to the fullerene cage, constitute an interesting class of fullerene derivatives. In particular, the chemical transformations of fullerene epoxides are expected to play an important role in the development of functionalized fullerenes. This is because such transformations can readily afford a variety of mono- or polyfunctionalized fullerene derivatives while conserving the epoxy ring arrangement on the fullerene surface, as seen in representative regioisomeric fullerene polyepoxides. The first part of this review addresses the synthesis and structural characterization of fullerene epoxides. The formation of fullerene epoxides through different oxidation reactions is then explored. Adequate characterization of the isolated fullerene epoxides was achieved by concerted use of NMR and LC-MS techniques. The second part of this review addresses the substitution of fullerene epoxides in the presence of a Lewis acid catalyst. Most major substitution products have been isolated as pure compounds and their structures established through spectroscopic methods. The correlation between the structure of the substitution product and the oxygenation pattern of the starting materials allows elucidation of the mechanistic features of this transformation. This approach promises to lead to rigorous regioselective production of various fullerene derivatives for a wide range of applications.
机译:具有直接连接在富勒烯笼上的环氧基的富勒烯环氧化物C 600,构成一类有趣的富勒烯衍生物。尤其是,富勒烯环氧化物的化学转化有望在官能化富勒烯的开发中发挥重要作用。这是因为这样的转化可以容易地提供各种单官能或多官能化的富勒烯衍生物,同时保持富勒烯表面上的环氧环排列,如代表性的区域异构富勒烯聚环氧化物中所见。这篇综述的第一部分讨论了富勒烯环氧化物的合成和结构表征。然后研究了通过不同的氧化反应形成的富勒烯环氧化物。通过共同使用NMR和LC-MS技术,可以对分离出的富勒烯环氧化物进行适当的表征。本文的第二部分讨论了路易斯酸催化剂存在下富勒烯环氧化物的取代。大多数主要的取代产物已被分离为纯化合物,并通过光谱法确定了其结构。取代产物的结构与起始材料的氧化模式之间的相关性使得可以阐明这种转变的机理特征。这种方法有望导致严格的区域选择性生产各种富勒烯衍生物的广泛应用。

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