Guan Runnan, Chen Muqing, Jin Fei, Yang Shangfeng
Hefei National Laboratory for Physical Sciences at Microscale, CAS Key Laboratory of Materials for Energy Conversion, Department of Materials Science and Engineering, Synergetic Innovation Center of Quantum Information & Quantum Physics, University of Science and Technology of China (USTC), Hefei, 230026, China.
Angew Chem Int Ed Engl. 2020 Jan 13;59(3):1048-1073. doi: 10.1002/anie.201901678. Epub 2019 Nov 8.
According to the isolated pentagon rule (IPR), for stable fullerenes, the 12 pentagons should be isolated from one another by hexagons, otherwise the fused pentagons will result in an increase in the local steric strain of the fullerene cage. However, the successful isolation of more than 100 endohedral and exohedral fullerenes containing fused pentagons over the past 20 years has shown that strain release of fused pentagons in fullerene cages is feasible. Herein, we present a general overview on fused-pentagon-containing (i.e. non-IPR) fullerenes through an exhaustive review of all the types of fused-pentagon-containing fullerenes reported to date. We clarify how the strain of fused pentagons can be released in different manners, and provide an in-depth understanding of the role of fused pentagons in the stability, electronic properties, and chemical reactivity of fullerene cages.
根据孤立五角形规则(IPR),对于稳定的富勒烯,12个五角形应通过六边形彼此隔离,否则稠合的五角形将导致富勒烯笼的局部空间应变增加。然而,在过去20年中成功分离出100多种含有稠合五角形的内包和外包富勒烯,这表明富勒烯笼中稠合五角形的应变释放是可行的。在此,我们通过详尽回顾迄今为止报道的所有类型的含稠合五角形富勒烯,对含稠合五角形(即非IPR)富勒烯进行了全面概述。我们阐明了稠合五角形的应变如何能够以不同方式释放,并深入理解了稠合五角形在富勒烯笼的稳定性、电子性质和化学反应性中的作用。