State Key Laboratory of Material Processing and Die & Mould Technology, College of Materials Science and Engineering, Huazhong University of Science and Technology, Wuhan, PR China.
Chem Soc Rev. 2012 Dec 7;41(23):7723-60. doi: 10.1039/c2cs35214a.
Endohedral metallofullerenes (EMFs), a new class of hybrid molecules formed by encapsulation of metallic species inside fullerene cages, exhibit unique properties that differ distinctly from those of empty fullerenes because of the presence of metals and their hybridization effects via electron transfer. This critical review provides a balanced but not an exhaustive summary regarding almost all aspects of EMFs, including the history, the classification, current progress in the synthesis, extraction, isolation, and characterization of EMFs, as well as their physiochemical properties and applications in fields such as electronics, photovoltaics, biomedicine, and materials science. Emphasis is assigned to experimentally obtained results, especially the X-ray crystallographic characterizations of EMFs and their derivatives, rather than theoretical calculations, although the latter has indeed enhanced our knowledge of metal-cage interactions. Finally, perspectives related to future developments and challenges in the research of EMFs are proposed. (381 references).
笼内金属富勒烯(EMFs)是一类新型的杂化分子,由金属物种封装在富勒烯笼内形成,由于金属的存在及其通过电子转移的杂化效应,表现出与空富勒烯明显不同的独特性质。这篇评论性综述提供了关于 EMFs 的几乎所有方面的平衡但非详尽的总结,包括其历史、分类、合成、提取、分离和表征方面的最新进展,以及它们在电子、光伏、生物医学和材料科学等领域的物理化学性质和应用。重点放在实验获得的结果上,特别是 EMFs 及其衍生物的 X 射线晶体学表征,而不是理论计算,尽管后者确实增强了我们对金属-笼相互作用的认识。最后,提出了与 EMFs 研究的未来发展和挑战相关的观点。(381 篇参考文献)