Tashiro Kentaro, Aida Takuzo
Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.
Chem Soc Rev. 2007 Feb;36(2):189-97. doi: 10.1039/b614883m. Epub 2006 Dec 5.
This paper is a tutorial review of the host-guest chemistry of fullerenes and metalloporphyrin. Among various host molecules for fullerenes, cyclic hosts composed of metalloporphyrin moieties possess one of the highest affinities toward fullerenes, which can be widely tuned simply by changing the central metal ions of the porphyrin moieties. Inclusion of fullerenes occurs not only by van der Waals interactions but also, in some cases, via pi-electronic charge-transfer from the host metalloporphyrin moieties to the guest fullerenes. Fullerenes such as C(120), upon inclusion with cyclic metalloporphyrin dimers, show an oscillatory motion within the host cavity, whose frequency reflects the solvation/desolvation dynamics of the fullerenes. A molecularly engineered metalloporphyrin host with a self-assembling capability allows a guest-directed formation of a supramolecular peapod, where included fullerenes, as peas, are aligned along the self-assembled metalloporphyrin nanotube, as a pod. Furthermore, certain metalloporphyrin hosts are applicable to the selective extraction of low-abundance higher fullerenes from an industrial production source and also allow spectroscopic discrimination of chiral fullerenes.
本文是一篇关于富勒烯与金属卟啉主客体化学的教程综述。在用于富勒烯的各种主体分子中,由金属卟啉部分组成的环状主体对富勒烯具有最高的亲和力之一,只需改变卟啉部分的中心金属离子,其亲和力就能得到广泛调节。富勒烯的包合不仅通过范德华相互作用发生,在某些情况下,还通过从主体金属卟啉部分到客体富勒烯的π电子电荷转移发生。诸如C(120)之类的富勒烯,在与环状金属卟啉二聚体包合时,会在主体腔内表现出振荡运动,其频率反映了富勒烯的溶剂化/去溶剂化动力学。具有自组装能力的分子工程化金属卟啉主体允许以客体导向的方式形成超分子“豆荚”,其中被包合的富勒烯作为“豌豆”沿着自组装的金属卟啉纳米管排列,就像一个“豆荚”。此外,某些金属卟啉主体可用于从工业生产源中选择性提取低丰度的高级富勒烯,还能实现对手性富勒烯的光谱鉴别。