Wong Bryan M, Lee Jonathan W
Materials Chemistry Department, Sandia National Laboratories , Livermore, California 94551, United States.
J Phys Chem Lett. 2011 Nov 3;2(21):2702-2706. doi: 10.1021/jz2012534. Epub 2011 Oct 12.
Carbon nanorings are hoop-shaped, π-conjugated macrocycles that form the fundamental annular segments of single-walled carbon nanotubes (SWNTs). In a very recent report, the structures of chiral carbon nanorings (which may serve as chemical templates for synthesizing chiral nanotubes) were experimentally synthesized and characterized for the first time. Here in our Letter we show that the properties of these unique chiral nanorings exhibit anomalous and extremely interesting optoelectronic properties with excitation energies growing larger as a function of size (in contradiction with typical quantum confinement effects). Although the first electronic excitation in armchair nanorings is forbidden with a weak oscillator strength, we find that the same excitation in chiral nanorings is allowed because of a strong geometric symmetry breaking. Most importantly, among all the possible nanorings synthesized in this fashion, we show that , corresponding to a SWNT with chiral indices (+3,+1), is extremely special with large photoinduced transitions that are most readily observable in spectroscopic experiments.
碳纳米环是呈箍状的π共轭大环,它们构成了单壁碳纳米管(SWNTs)的基本环形片段。在最近的一份报告中,手性碳纳米环(可作为合成手性纳米管的化学模板)的结构首次通过实验合成并得到表征。在我们的这篇快报中,我们表明这些独特的手性纳米环的性质表现出异常且极其有趣的光电性质,其激发能随着尺寸增大而增大(这与典型的量子限制效应相反)。尽管扶手椅型纳米环中的第一电子激发因振子强度较弱而被禁阻,但我们发现手性纳米环中的相同激发是允许的,这是由于强烈的几何对称性破缺。最重要的是,在以这种方式合成的所有可能的纳米环中,我们表明,对应于手性指数为(+3,+1)的单壁碳纳米管的纳米环极其特殊,具有大的光致跃迁,在光谱实验中最容易观察到。