Tsukuba Advanced Research Alliance (TARA Center), University of Tsukuba, Tsukuba, Ibaraki 305-8577, Japan.
Chem Commun (Camb). 2011 Jun 7;47(21):5942-57. doi: 10.1039/c1cc10123d. Epub 2011 Mar 25.
Recent breakthroughs achieved in the chemical functionalization of endohedral metallofullerenes (EMFs), especially single crystallographic X-ray characterizations of their derivatives, have presented fundamentally new insights into the structures and properties of these metal-carbon hybrid molecules, and have also brought immense potential applications. In particular, the interplay between the encapsulated metallic species and the fullerene cage has been well investigated. On one hand, the position and motion of the encapsulated metals can be effectively controlled by exohedral modification. On the other hand, the cage structures, the chemical behaviours of cage carbons and thus the chemical reactivity of the whole molecule are also apparently influenced by the electronic configuration and geometrical conformation of the internal metals via strong metal-cage interactions. In this article, we contribute a systematic review of the important chemical transformations of EMFs reported to date, including disilylation, 1,3-dipolar cycloaddition with ylides, cyclopropanation with carbenes and carbanions, cycloaddition with dienes and benzyne, radical reactions, and other miscellaneous reactions, in addition to noncovalent interactions such as supramolecular complexation. The roles that internal metals play in controlling the reactivity of cage carbons are particularly emphasized. Finally, some applicable materials based on EMFs and their derivatives are summarized and practical perspectives are proposed.
最近在金属富勒烯(EMFs)的化学功能化方面取得的突破,特别是对其衍生物的单晶 X 射线特征的研究,为这些金属-碳杂化分子的结构和性质提供了全新的认识,也带来了巨大的潜在应用。特别是,封装金属物种和富勒烯笼之间的相互作用得到了很好的研究。一方面,通过外部修饰可以有效地控制封装金属的位置和运动。另一方面,笼状结构、笼状碳原子的化学行为以及整个分子的化学反应性也明显受到内部金属的电子构型和几何构象的影响,这是通过强金属-笼相互作用实现的。在本文中,我们对迄今为止报道的 EMFs 的重要化学转化进行了系统的综述,包括二硅化、与叶立德的 1,3-偶极环加成、与卡宾和碳负离子的环丙烷化、与二烯和苯炔的环加成、自由基反应和其他杂类反应,以及超分子络合等非共价相互作用。特别强调了内部金属在控制笼状碳原子反应性方面的作用。最后,总结了基于 EMFs 及其衍生物的一些应用材料,并提出了实际的展望。